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© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 1
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Relatório de Vigilância Tecnológica
Áreas analisadas:
Moldes, Ferramentas Especiais e Processos de Injecção
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 2
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
DISCLAIMER
Este documento está protegido por Direitos de Autor © 2011 Clarke, Modet & Cº ‐ Portugal. Todos os
direitos reservados.
Toda informação contida neste documento é considerada privilegiada e confidencial, visto que este
material inclui descrições metodológicas de propriedade exclusiva da Clarke, Modet & Cº Portugal.
Nenhuma parte deste documento poderá ser alterada, reproduzida, cedida ou distribuída, total ou
parcialmente pelo cliente para fins comerciais diferentes dos previstos sem a prévia autorização por
escrito da Clarke, Modet & Cº Portugal.
A Clarke, Modet & Cº Portugal autoriza o uso da informação contida neste documento como ferramenta
interna de trabalho do cliente, permitindo nesses termos a sua consulta.
AOS UTILIZADORES está expressamente proibida a impressão, cópia, reprodução, alteração e
distribuição gratuita ou onerosa, total ou parcial, dos conteúdos deste documento.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 3
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
ÍNDICE
SUMÁRIO EXECUTIVO ........................................................................................ 4
1. INTRODUÇÃO ............................................................................................... 5
1.1. INDÚSTRIA DOS MOLDES EM PORTUGAL .............................................................................6
2. INFORMAÇÃO TECNOLÓGICA ....................................................................... 8
2.1. METODOLOGIA .............................................................................................................8
2.2. RESULTADOS DAS PESQUISAS............................................................................................9
2.3. NATUREZA DOS REQUERENTES..........................................................................................9
2.4. DISTRIBUIÇÃO DOS DOCUMENTOS DE PATENTE POR ÁREAS TECNOLÓGICAS .................................10
3. ÁREA DOS MOLDES .................................................................................... 12
3.1. IDENTIFICAÇÃO E QUANTIFICAÇÃO DE TECNOLOGIAS .............................................................12
3.2. LIDERANÇA TECNOLÓGICA..............................................................................................13
3.3. INDICADOR PROTECÇÃO GEOGRÁFICA...............................................................................14
4. FERRAMENTAS ESPECIAIS........................................................................... 17
4.1. IDENTIFICAÇÃO E QUANTIFICAÇÃO DE TECNOLOGIAS .............................................................17
4.2. LIDERANÇA TECNOLÓGICA..............................................................................................18
4.3. INDICADOR PROTECÇÃO GEOGRÁFICA...............................................................................19
5. PROCESSOS DE INJECÇÃO ........................................................................... 22
5.1. IDENTIFICAÇÃO E QUANTIFICAÇÃO DE TECNOLOGIAS .............................................................22
5.2. LIDERANÇA TECNOLÓGICA..............................................................................................24
5.3. INDICADOR PROTECÇÃO GEOGRÁFICA...............................................................................25
6. EMPRESAS.................................................................................................. 29
6.1. EMPRESAS DE REFERÊNCIA EM 2010 (DE ACORDO COM Nº DE PATENTES) ..................................29
6.2. OUTRAS EMPRESAS RELEVANTES......................................................................................33
7. NOTÍCIAS.................................................................................................... 35
ANEXO I – Listagem das patentes seleccionadas em 2010 ................................ 44
ANEXO II ‐ Clarke, Modet & Co Portugal............................................................ 85
ANEXO III ‐ Disclaimer ...................................................................................... 87
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 4
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
SUMÁRIO EXECUTIVO
O presente relatório tem como objectivo apresentar os resultados de uma análise de
Vigilância Tecnológica, aos desenvolvimentos patenteados nas áreas tecnológicas
relacionadas com a Indústria de Moldes, nomeadamente fabrico de Moldes, Ferramentas
Especiais e Processos de Injecção, durante o ano de 2010.
A metodologia utilizada assentou na identificação e análise de documentos de patente
relevantes nas referidas áreas, através de pesquisas conceptuais considerando palavras e
conceitos‐chave, designadamente: mould making, mould tool, plastic, polymer, injection,
rapid prototyping, micro‐mold, entre outras.
Através da combinação dos critérios de pesquisa previamente definidos, foram encontrados
325 documentos de patente relevantes na área, dos quais 59% se referem a Processos de
Injecção, 30% à produção de Moldes e 11% a Ferramentas Especiais.
Analisando a natureza dos requerentes dos pedidos de patente seleccionados, verificou‐se
que grande parte da investigação e desenvolvimento nestas áreas, aproximadamente 75%, é
realizada por empresas, o que confirma o facto de se tratarem de áreas tecnológicas já
estabelecidas no mercado e suficientemente desenvolvidas, para resultar em produtos e
soluções tecnológicas para aplicação industrial.
Em 2010, as principais tecnologias desenvolvidas na área de Moldes focam aspectos
relacionados com o desenho de moldes e o método específico de fabrico rapid prototyping.
Relativamente, às Ferramentas Especiais o maior enfoque é dado ao desenho e estrutura das
máquinas e os seus componentes. No caso dos Processos de Injecção verificou‐se que esta
técnica é maioritariamente utilizada em moldagem por injecção de plásticos.
Quanto aos países de prioridade das patentes encontradas, evidencia‐se a clara
preponderância da China e Japão em todas as áreas, sendo que, nas de Ferramentas
Especiais e Processos de Injecção, a Alemanha e os EUA assumem, também, uma posição de
relevo. Relativamente aos países de extensão escolhidos pelos requerentes nos seus pedidos
de patente, os países com maior relevo são, mais uma vez, a China, o Japão, os EUA e a
Alemanha, esta última especificamente no caso da área Ferramentas Especiais.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 5
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
1. INTRODUÇÃO
A indústria dos moldes é considerada um sector industrial relativamente jovem, uma vez que a
sua transformação numa indústria de relevo económico, ocorreu em 1940, com o
desenvolvimento dos materiais termoplásticos.
A partir desta data, o sector tem apresentado uma tendência constante de crescimento,
intensificada com o aparecimento de tecnologias inovadoras como, por exemplo, prensas de
moldagem por injecção, com a capacidade de processar grandes volumes de material, que
permitem a diversificação de produtos e aplicações em diferentes áreas. Desde embalagens de
plástico, a componentes de computador, telemóveis, componentes do sector automóvel,
aeronáutico e de defesa, o plástico está presente em todos, sendo necessária a utilização de
moldes de diversos tipos, formas e características, na produção de qualquer um destes
produtos. O sector dos moldes tornou‐se, assim, uma indústria de suporte para muitas outras
indústrias e segmentos, nomeadamente na área dos plásticos, maquinaria e componentes de
produtos finais.
Existem diferentes técnicas de moldagem dependendo da utilização futura dos produtos
fabricados, sendo os moldes utilizados adequados à sua futura aplicação. Neste contexto,
existem moldes para processos de injecção, sendo esta técnica mais utilizada na indústria dos
plásticos, para produção de componentes de computador, telemóveis ou equipamentos de
escritório; moldes termoformados (thermoformed) para produção de componentes com
elevada resistência como pára‐choques de veículos automóveis ou embalagens de transporte;
moldes para processos de sopro para embalagens de plástico de bens alimentares, como leite e
sumos.
Existem, de igual forma, moldes para produção de componentes não plásticos, denominados
cunhos, utilizados na produção de componentes metálicos, como por exemplo tubos metálicos,
utilizados em sistemas de irrigação ou esgotos, a pequenos tubos de aplicação médica.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 6
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Esta indústria tem sofrido grandes transformações, nos últimos 10 anos, ao nível dos principais
players, com o declínio patente em alguns mercados tradicionais como por exemplo os EUA,
agravado pela crise dos anos 2008 e 2009, e o crescimento exponencial noutros mercados em
desenvolvimento, como a China ou, de uma forma menos intensa, a Índia e a Europa de Leste.
Estas novas tecnologias, aliam as novas tecnologias a uma mão‐de‐obra pouco dispendiosa.
beneficiando, assim, de uma vantajosa política de preços que permite aumentar
significativamente a sua competitividade a nível internacional, apesar dos segmentos em que
actuam serem na sua grande maioria a de moldes pouco técnicos.
1.1. Indústria dos Moldes em Portugal 1
O sector dos Moldes e Ferramentas Especiais constitui, em todos os países industrializados, um
sector estratégico por duas razões fundamentais:
• Os moldes e as ferramentas especiais são peças fundamentais para a fabricação de uma
vasta variedade de produtos;
• O desenvolvimento dos moldes e ferramentas especiais está no caminho crítico para a
concepção e desenvolvimento de novos produtos.
Apesar de Portugal ser uma economia relativamente pequena, encontra‐se entre os maiores
fabricantes mundiais de moldes, exportando cerca de 90% da sua produção. Cada vez mais,
grandes multinacionais associadas a reconhecidas marcas internacionais na indústria
automóvel, de embalagem, da electrónica/ telecomunicações, de electrodomésticos, entre
outros, seleccionam empresas nacionais para o fabrico dos seus moldes.
Observando os gráficos seguintes é possível verificar a forte vocação exportadora do sector.
1 Cefamol ‐ Associação Nacional da Indústria de Moldes. Internet, relatórios e estudos.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 7
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Fonte: AICEP / Unidade: milhões de Euros
Figura 1: Balança Comercial (2000 ‐ 2009)
Fonte: AICEP e Cefamol ‐ Associação Nacional da Indústria dos Moldes.
Figura 2: Produção vs Exportação na Indústria dos Moldes
Apesar da sua evidente importância estratégica e reconhecida adaptabilidade a novos desafios,
a crescente pressão dos clientes (geralmente grandes grupos económicos), que determinam os
preços e condições de fornecimento de forma concertada, e a deslocalização de diversas
indústrias para outras regiões do globo, colocam ameaças crescentes ao sector em Portugal.
Neste contexto, as empresas portuguesas de moldes têm vindo a desenvolver uma estratégia
de especialização em áreas específicas, sendo que algumas trabalham somente com cavidades
ou bases de moldes, polimentos, moldes de grande porte e outras em moldes de maior
precisão.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 8
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
2. INFORMAÇÃO TECNOLÓGICA
2.1. Metodologia
O presente relatório de Vigilância Tecnológica foi desenvolvido tendo como base documentos
de patente publicados durante o ano 2010, em três áreas tecnológicas identificadas pelo
CENTIMFE: Moldes, Ferramentas Especiais e Processos de Injecção.
As pesquisas de documentos de patente foram realizadas, recorrendo a bases de dados da
Thomson Scientific Corporation, que reúnem dados de mais de 6.500 revistas científicas e de
Patentes e agrupam informação e dados de vários institutos nacionais de Propriedade
Industrial, como o INPI – Instituto Nacional de Propriedade Industrial de Portugal, o EPO –
European Patent Office e a WIPO – World Intellectual Property Organization.
A pesquisa de documentos foi realizada através de buscas conceptuais, recorrendo a palavras‐
chave consideradas relevantes para a caracterização das áreas consideradas, definidas pelo
CENTIMFE no início do Projecto e tratadas pela equipa da Clarke, Modet & Co Portugal.
Assim, o ponto de partida das pesquisas baseou‐se em conceitos chave como: mould making,
mould tool, plastic, polymer, injection, rapid prototyping, micro‐mold, entre outras não só na
língua inglesa, como também francesa e alemã. Os vários conjuntos de documentos obtidos por
aplicação destes conceitos, foram refinados mediante sub‐pesquisas com conceitos e palavras‐
chave mais específicos e de maior relevância para as áreas em estudo e no final realizou‐se
ainda o cruzamento das várias pesquisas.
Todos os documentos foram analisados e caracterizados, segundo o seu âmbito/aplicação,
sendo posteriormente utilizados para desenvolver os dois indicadores de inovação
apresentados no presente relatório de Vigilância Tecnológica: indicador de Liderança
Tecnológica e indicador de Protecção Geográfica.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 9
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
2.2. Resultados das Pesquisas
Através da combinação dos critérios de pesquisa previamente definidos, foram encontrados
325 documentos de patente considerados de interesse para as áreas tecnológicas em causa,
por serem directamente relevantes para o estudo das tecnologias, ou por as abordarem de uma
forma mais tangencial, ainda assim relevante.
No Anexo I encontram‐se listados todos os documentos de patente utilizados no
desenvolvimento do presente estudo, com indicação do Nº de publicação, Título, Resumo e
Requerente.
2.3. Natureza dos Requerentes
Partindo do conjunto de documentos resultantes das pesquisas, estudou‐se a natureza dos
requerentes de patentes nas três áreas tecnológicas consideradas, com o objectivo de
identificar o tipo de requerente – Empresas, Universidades / Centros de I&D, Investigadores ‐
que liderou a tecnologia nestas áreas, em 2010.
Distribuição de patentes por natureza de requerente
75%
20%
5%
Empresas Universidades / I&D Inventores Particulares
Fonte: Elaboração própria a partir das bases de dados da Thomson Innovation
Gráfico 1: Distribuição da natureza de requerentes de patentes
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 10
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Verifica‐se que grande parte da investigação desenvolvida nestas áreas foi realizada por
empresas, o que confirma o facto de se tratarem de áreas tecnológicas já estabelecidas no
mercado e suficientemente desenvolvidas, para resultar em produtos e soluções tecnológicas
para aplicação industrial / comercialização.
2.4. Distribuição dos documentos de patente por áreas tecnológicas
Os 325 documentos de patente resultantes das pesquisas foram cuidadosamente analisados,
quanto ao seu conteúdo e reivindicações, de modo a identificar o seu âmbito e campo de
aplicação, dentro das áreas tecnológicas consideradas neste relatório: Moldes, Ferramentas
Especiais e Processos de Injecção.
O Gráfico 2 apresenta a proporção relativa de patentes relativamente a cada uma das áreas
consideradas.
Distribuição de patentes por área tecnológica
Moldes30%
Ferramentas Especiais
11%
Processos de Injecção59%
Fonte: Elaboração própria a partir das bases de dados da Thomson Innovation
Gráfico 2: Distribuição de patentes por área tecnológica, em 2010.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 11
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
A maior percentagem de patentes publicadas nas áreas tecnológicas consideradas refere‐se a
invenções para aplicação em Processos de Injecção, com um total de 195 documentos de
patente publicados (59% do total), em 2010.
Cada uma das patentes identificadas nas áreas tecnológicas consideradas ‐ Moldes,
Ferramentas Especiais e Processos de Injecção ‐ foi, seguidamente, analisada de acordo com o
seu conteúdo, requerentes e protecção geográfica.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 12
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
3. ÁREA DOS MOLDES
Na área tecnológica dos Moldes, foram identificados 96 documentos de patente, publicados
durante o ano de 2010, considerados relevantes para o presente estudo.
3.1. Identificação e quantificação de tecnologias
Através da análise de cada uma das 96 patentes obtidas, foram identificadas e quantificadas as
principais tecnologias desenvolvidas na área dos moldes.
De acordo com o seu conteúdo, os documentos foram agrupados em quatro categorias
fundamentais:
• Desenho / Estrutura: desenho, configuração ou disposição dos elementos constituintes
dos moldes e sistemas afins;
• Rapid Prototyping: fabrico de moldes, por métodos específicos de rapid prototyping;
• Componentes: componentes ou acessórios específicos fabricados ou montados em
moldes e sistemas, com o objectivo de controlar ou melhorar determinados parâmetros
da produção;
• Fabrico: novos ou aperfeiçoados métodos /processos de fabrico de moldes.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 13
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Moldes
0
10
20
30
40
50
60
Desenho /Estrutura
Rapid Prototyping Componentes Fabrico
Nº Patentes
Fonte: Elaboração própria a partir das bases de dados da Thomson Innovation
Gráfico 3: Distribuição de patentes por área de aplicação / tecnologias desenvolvidas, em 2010.
Verifica‐se, que no ano de 2010 o nº mais elevado publicações na área dos Moldes
correspondeu ao campo tecnológico específico do desenho / estrutura dos moldes, tendo sido
publicados um total de 55 documentos, cerca de três vezes mais do que o segundo campo
tecnológico mais desenvolvido em termos de patentes, Rapid Prototyping.
3.2. Liderança Tecnológica
O indicador de Liderança Tecnológica baseia‐se na determinação do número de documentos
que cada empresa/organização publicou em 2010 na área dos Moldes e, como tal, permite
identificar as entidades que apresentam maior impacto tecnológico ou maior grau de avanço e
evolução tecnológica.
As entidades identificadas por este indicador, poderão representar potenciais parceiros ou
concorrentes das empresas associadas do CENTIMFE, em projectos de investigação e/ou
desenvolvimento da área tecnológica em análise.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 14
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Tabela 1. Principais requerentes na área dos Moldes, em 2010
Requerentes Nº Patentes
Qiaofeng Machinery Mold 3
Mitsubishi Heavy Industries 3
Hon Hai Precision Co Ltd 3
ECIM Technologies 2
Samsung Electronics 2
Fonte: Elaboração própria a partir das bases de dados da Thomson Innovation
Esta área apresenta uma liderança tecnológica dispersa, isto é, poucos requerentes publicaram
mais de uma patente e nenhuma apresenta uma posição de liderança demarcada,
relativamente aos restantes. No entanto, deve ter‐se em consideração, que o indicador foi
construído sob uma base temporal muito curta, de apenas um ano. Estas empresas não devem,
por isso, ser tomadas como líderes do sector, mas sim como importantes referências no
mesmo.
No Capítulo 6 encontram‐se breves descrições das empresas identificadas na Tabela 1., que
incluem informações relativas ao campo de actividade das mesmas e que poderão ter interesse
para o CENTIMFE.
3.3. Indicador Protecção Geográfica
• Países de Prioridade: o presente subcapítulo tem como objectivo analisar quais os
países ou regiões que mais contribuíram para os avanços tecnológicos, no ano de 2010,
e consequentemente foram mais importantes ao nível da investigação e do
desenvolvimento da área tecnológica dos Moldes.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 15
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Países de Prioridade
29%
28%9%
8%
6%
5%
4%
3%2% 2% 1%1%1% 1%
Japão China Rep. Coreia EUA AlemanhaEP Itália Taiwan França HolandaAustria Brasil Espanha Grã‐Bretanha
Fonte: Elaboração própria a partir das bases de dados da Thomson Innovation
Gráfico 4: Países de prioridade de tecnologias, na área dos Moldes, com patentes publicadas em 2010.
Verifica‐se uma grande diversidade de países/regiões com um papel importante na área dos
Moldes em 2010, sendo no entanto o Japão e a China os países geradores de tecnologia com
maior número de documentos na área, tendo respectivamente 27 e 26 patentes publicadas.
Países de Extensão: são aqui analisados os países ou regiões que em 2010 foram os mais
designados pelos detentores de tecnologia para estender a protecção da mesma pelo direito de
patente. Esta informação poderá ser indicadora do potencial de mercado, a nível mundial, na
área dos Moldes.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 16
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Países de Extensão
28%
22%20%
12%
7%
5%2% 1%1%1%1%
China Japão EUA Rep. CoreiaEP WO Rússia BrasilAlemanha México Espanha
Fonte: Elaboração própria a partir das bases de dados da Thomson Innovation
Gráfico 5: Países de extensão de protecção de tecnologias, na área dos Moldes, em 2010.
Após análise do gráfico, e partindo do princípio que a escolha dos países designados na
selecção de patentes em estudo, correspondem aos mercados mais interessantes na área
tecnológica dos Moldes, podemos verificar uma considerável quantidade de países nos quais
estas tecnologias se encontram protegidas, dos quais se destacam a China, o Japão, os EUA e a
República da Coreia, com 26, 21, 19 e 11 documentos de patente publicados, respectivamente.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 17
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
4. FERRAMENTAS ESPECIAIS
Na área tecnológica das Ferramentas Especiais, foram identificados 35 documentos de patente,
publicados durante o ano de 2010, considerados relevantes para o presente estudo.
4.1. Identificação e quantificação de tecnologias
Pela análise das 35 patentes resultantes das pesquisas, foram identificadas e quantificadas as
principais tecnologias desenvolvidas na área das Ferramentas Especiais.
De acordo com o seu conteúdo, os documentos foram agrupados em três categorias
fundamentais:
• Desenho / Estrutura: desenho, configuração ou disposição dos elementos constituintes
das ferramentas, permitindo funcionalidades específicas ou melhoradas;
• Componentes: componentes ou acessórios das ferramentas, desenvolvidos com o
objectivo de controlar ou melhorar determinados parâmetros da produção;
• Materiais / Fabrico: materiais utilizados no fabrico de ferramentas especiais e processos
de fabrico das mesmas.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 18
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Ferramentas Especiais
0
5
10
15
20
25
Desenho / Estrutura Componentes Materiais / Fabrico
Nº Patentes
Fonte: Elaboração própria a partir das bases de dados da Thomson Innovation
Gráfico 6: Distribuição de patentes por área de aplicação / tecnologias desenvolvidas, em 2010.
No ano de 2010, o nº mais elevado de publicações na área das Ferramentas Especiais
correspondeu ao campo tecnológico específico do desenho / estrutura das Ferramentas, tendo
sido publicados um total de 22 documentos, cerca de três vezes mais do que o número de
patentes publicadas pelos dois outros campos tecnológicos mais desenvolvidos: Componentes
e Materiais/Fabrico.
4.2. Liderança Tecnológica
O indicador de Liderança Tecnológica baseia‐se na determinação do número de documentos
que cada empresa/organização publicou em 2010 na área das Ferramentas Especiais,
permitindo identificar as entidades que apresentam maior impacto tecnológico ou maior grau
de avanço e evolução tecnológica.
As entidades identificadas por este indicador, poderão representar potenciais parceiros ou
concorrentes das empresas associadas do CENTIMFE, em projectos de investigação e/ou
desenvolvimento da área tecnológica em análise.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 19
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Tabela 2. Principais requerentes na área das Ferramentas Especiais, em 2010
Requerentes Nº Patentes
Sumitomo 2
Hansei, Bernd 2
Husky Injection Molding 2
Kraussmaffei Technologies 2
Rovalma 2
Fonte: Elaboração própria a partir das bases de dados da Thomson Innovation
Há semelhança do que foi observado para a área dos Moldes, esta área apresenta uma
liderança tecnológica dispersa. No entanto, como já foi referido anteriormente, deve ter‐se em
consideração que o indicador foi construído sob uma base temporal muito curta, de apenas um
ano, e como tal estas empresas devem ser tomadas como importantes referências no mesmo.
No Capítulo 6 encontram‐se breves descrições das empresas identificadas na Tabela 2., que
incluem informações relativas ao campo de actividade das mesmas e que poderão ter interesse
para o CENTIMFE. De salientar que um dos requerentes identificados, Bernd Hansei, é um
inventor que submeteu 2 patentes a título individual mas acerca do qual não foi possível
encontrar informação relevante.
4.3. Indicador Protecção Geográfica
• Países de Prioridade: são aqui analisados os países ou regiões que mais contribuíram
para os avanços tecnológicos, durante o ano de 2010, na área das Ferramentas
Especiais, tendo sido por isso os mais importantes ao nível da investigação e
desenvolvimento da área.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 20
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Países de Prioridade
36%
11%11%
9%
9%
3%
3%
3%
3%3%
3% 3% 3%
Alemanha EUA China Japão Suécia
Canadá Suiça EP Espanha Taiwan
França Grã‐Bretanha Rep. Coreia
Fonte: Elaboração própria a partir das bases de dados da Thomson Innovation
Gráfico 7: Países de prioridade de tecnologia na área das Ferramentas, com patentes publicadas em
2010.
Existe alguma diversidade de países/regiões com um papel importante na área das Ferramentas
Especiais em 2010, sendo a Alemanha o país líder em termos de geração de tecnologias
inovadoras nesta área, com 13 documentos publicados em 2010, seguida dos EUA e da China,
ambas com 4 patentes cada.
Países de Extensão: este indicador analisa países ou regiões que em 2010 foram os mais
designados pelos detentores de tecnologias desenvolvidas na área das Ferramentas Especiais,
para estender a protecção das mesmas pelo direito de patente. Esta informação poderá ser
indicadora do potencial de mercado, a nível mundial, na área das Ferramentas Especiais.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 21
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Países de Extensão
18%
17%
14%11%
11%
11%
9%
3% 3% 3%
Alemanha EUA China EP Japão
Rep. Coreia WO Canadá Rússia Grã‐Bretanha
Fonte: Elaboração própria a partir das bases de dados da Thomson Innovation
Gráfico 8: Países de extensão de protecção de tecnologias, na área das Ferramentas, em 2010.
Após análise do gráfico, e partindo do princípio que a escolha dos países designados na
selecção de patentes em estudo, correspondem aos mercados mais interessantes na área
tecnológica das Ferramentas Especiais, podemos verificar uma quantidade considerável de
países nos quais estas tecnologias se encontram protegidas, dos quais se destacam a Alemanha,
os EUA e a China, com 6, 6 e 5 documentos de patente publicados, respectivamente.
Destaca‐se ainda a área EP, que representa 11% do total de países/regiões designadas e que
corresponde a documentos de patentes publicados para os quais ainda não foram designados
países, por se encontrarem numa fase em que ainda abrangem todos os países da Patente
Europeia.
Como resultado da análise deste indicador, pode concluir‐se que as tecnologias na área das
Ferramentas Especiais têm um interesse global elevado e um elevado potencial comercial.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 22
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
5. PROCESSOS DE INJECÇÃO
A área tecnológica dos Processos de Injecção foi a que publicou o maior número de patentes
em 2010, tendo sido identificados 194 documentos de patente considerados relevantes para o
presente estudo.
5.1. Identificação e quantificação de tecnologias
Através da análise das 194 patentes resultantes das pesquisas, foram identificadas e
quantificadas as principais tecnologias publicadas em 2010, na área dos Processos de Injecção.
De acordo com o seu conteúdo, os documentos foram agrupados em cinco categorias
fundamentais:
• Máquinas / Componentes Injecção Plástico: desenvolvimento de máquinas de injecção
de plástico ou aperfeiçoamentos realizados em máquinas já existentes; componentes
para sistemas de injecção de plásticos especificamente desenhados para melhorar ou
controlar determinados parâmetros da produção.
• Máquinas / Componentes Injecção Metais: desenvolvimento de máquinas de injecção
de metal ou aperfeiçoamentos realizados em máquinas já existentes; componentes para
sistemas de injecção de metal especificamente desenhados para melhorar ou controlar
determinados parâmetros da produção.
• Máquinas / Componentes Injecção Compósitos: desenvolvimento de máquinas de
injecção de compósitos ou aperfeiçoamentos realizados em máquinas já existentes;
componentes para sistemas de injecção de compósitos especificamente desenhados
para melhorar ou controlar determinados parâmetros da produção.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 23
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
• Processos de Fabrico: processos ou métodos de moldagem por injecção de
componentes (em plástico, metal ou compósitos)
• Outros: outros desenvolvimentos, como softwares de transmissão de dados ou
características específicas do material a ser moldado.
Processos de Injecção
0
20
40
60
80
100
120
Máquinas /Componentes
InjecçãoPlástico
Processos deFabrico
Máquinas /Componentes
InjecçãoCompósitos
Outros Máquinas /ComponentesInjecção Metal
Nº Patentes
Fonte: Elaboração própria a partir das bases de dados da Thomson Innovation
Gráfico 9: Distribuição de patentes por área de aplicação / tecnologias desenvolvidas, em 2010.
No ano de 2010, o nº mais elevado de publicações na área dos Sistemas de Injecção
correspondeu ao campo tecnológico das Máquinas / Componentes ou acessórios para injecção
de produtos em plástico, tendo sido publicados um total de 106 documentos. O segundo maior
número de desenvolvimentos nesta área foi registado nos Processos de Fabrico, utilizando
sistemas de injecção, com cerca de 67 patentes publicadas, em 2010.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 24
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
5.2. Liderança Tecnológica
O indicador de Liderança Tecnológica baseia‐se na determinação do número de documentos
que cada empresa/organização publicou em 2010, na área dos Processos de Injecção,
permitindo identificar as entidades que apresentam maior impacto tecnológico ou maior grau
de avanço e evolução tecnológica.
As entidades identificadas por este indicador, poderão representar potenciais parceiros ou
concorrentes das empresas associadas do CENTIMFE, em projectos de investigação e/ou
desenvolvimento da área tecnológica em análise.
Tabela 3. Principais requerentes na área dos Processos de Injecção, em 2010
Requerentes Nº Patentes
Inglass Spa 7
Hehl Karl 5
Ningbo 5
Husky Injection Molding 4
Fonte: Elaboração própria a partir das bases de dados da Thomson Innovation
Verifica‐se que esta área apresenta uma liderança tecnológica menos dispersa do que no caso
das áreas tecnológicas dos Moldes e das Ferramentas Especiais, destacando‐se a empresa
Inglass Spa, como líder tecnológico do sector, em 2010.
De destacar ainda que a empresa Husky Injection Molding, já identificada na análise à área
tecnológica das Ferramentas Especiais, aparece de novo como uma das quatro empresas mais
relevantes na área dos Processos de Injecção em 2010, sendo por isso uma empresa de
referência importante no sector de actividade do CENTIMFE.
No Capítulo 6 encontram‐se breves descrições das empresas identificadas na Tabela 3., que
incluem informações relativas ao campo de actividade das mesmas e que poderão ter interesse
para o CENTIMFE. De salientar que um dos requerentes identificados, Hehl Karl, é um inventor
que submeteu 5 patentes a nível individual, mas acerca do qual não foi possível encontrar
informação relevante.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 25
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
5.3. Indicador Protecção Geográfica
• Países de prioridade: são aqui analisados os países ou regiões que mais contribuíram
para os avanços tecnológicos, no ano de 2010, na área dos Processos de Injecção, tendo
sido por isso os mais importantes ao nível da investigação e do desenvolvimento da
área.
Países de Prioridade
20%
17%
15%
15%
10%
5%
3%
3%3%
2% 2%1% 1%1%
1%1%
1%1% 1%1%
China Japão Alemanha EUA Itália EP Rep. CoreiaÁustria Suiça França Grã‐Bretanha Holanda Brasil Canadá
Taiwan Tailândia Índia Rússia México WO
Fonte: Elaboração própria a partir das bases de dados da Thomson Innovation
Gráfico 10: Países de prioridade de tecnologia na área dos Processos, com patentes publicadas em 2010.
Verifica‐se que muitos países/regiões assumiram em 2010 um papel importante na área dos
Processos de Injecção, sendo a China o país líder em termos de geração de tecnologias
inovadoras nesta área, com 39 documentos publicados, seguida do Japão, com 34. A Alemanha,
os EUA e a Itália também apresentam um número considerável de patentes publicadas nesta
área, com 30, 30 e 20 documentos publicados em 2010, respectivamente.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 26
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Países de Extensão: este indicador analisa países ou regiões que em 2010 foram os mais
designados pelos detentores de tecnologias desenvolvidas na área dos Processos de Injecção,
para estender a protecção das mesmas pelo direito de patente. Esta informação poderá ser
indicadora do potencial de mercado, a nível mundial, na área dos Processos de Injecção.
Países de Extensão
24%
20%
15%
12%
8%
6%
4%
3%2% 2%1%1%1%1%1%1%1%1%
China Japão EUA EP Itália AlemanhaWO Rep. Coreia França Grã‐Bretanha Áustria MéxicoCanadá Rússia Brasil Índia Tailândia Hong Kong
Fonte: Elaboração própria a partir das bases de dados da Thomson Innovation
Gráfico 11: Países de extensão de protecção de tecnologias, na área dos Processos de injecção, em 2010.
Após análise do gráfico, e partindo do princípio que a escolha dos países designados na
selecção de patentes em estudo, correspondem aos mercados mais interessantes na área
tecnológica dos Sistemas de Injecção, podemos verificar uma quantidade considerável de
países nos quais estas tecnologias se encontram protegidas, dos quais se destacam a China, o
Japão e os EUA, com 46, 39 e 30 documentos de patente publicados, respectivamente.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 27
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Destaca‐se, ainda, a área EP, que representa 12% do total de países/regiões designadas e que
corresponde a documentos de patentes publicados para os quais ainda não foram designados
países, por se encontrarem numa fase em que ainda abrangem todos os países da Patente
Europeia.
Como resultado da análise deste indicador, pode concluir‐se que as tecnologias na área dos
Processos de Injecção têm um interesse global elevado e um alto potencial comercial.
De seguida, apresenta‐se um quadro resumo com os principais resultados deste estudo de
Vigilância Tecnológica.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 28
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Natureza dosrequerentes
Áreas de aplicação
Países de prioridade
Principais paísesde extensão
Empresa
UniversidadeCentro I&D
InventorParticular
75 %
20 %
5 %
15 %
Processos deInjecção
Moldes
Ferramentas Especiais
59 %
30 %
11 %
Tecnologias mais relevantes
• Desenho / Estrutura
• Rapid prototyping
• Desenho / Estrutura
• Componentes
Entidades de referência
(com maior nº patentes)
Qiaofeng MachineryMould
Mitsubishi HeavyIndustry
Hon Hai Precision Co.
Husky InjectionMolding Systems
Sumitomo HeavyIndustry
KraussMaffeiTechnologies
Rovalma
• Máquinas/ Componentes injecção plástico
• Processos de fabrico
Inglass Spa
20 %
17 %
15 %
28 %
29 %
11 %
36 %
11 %
15 %
24 %
20 %
12 %
28 %
22 %
20 %
17 %
18 %
14 %
Natureza dosrequerentes
Áreas de aplicação
Países de prioridade
Principais paísesde extensão
Empresa
UniversidadeCentro I&D
InventorParticular
75 %
20 %
5 %
15 %
Processos deInjecção
Moldes
Ferramentas Especiais
59 %
30 %
11 %
Tecnologias mais relevantes
• Desenho / Estrutura
• Rapid prototyping
• Desenho / Estrutura
• Componentes
Entidades de referência
(com maior nº patentes)
Qiaofeng MachineryMould
Mitsubishi HeavyIndustry
Hon Hai Precision Co.
Husky InjectionMolding Systems
Sumitomo HeavyIndustry
KraussMaffeiTechnologies
Rovalma
• Máquinas/ Componentes injecção plástico
• Processos de fabrico
Inglass Spa
20 %
17 %
15 %
28 %
29 %
11 %
36 %
11 %
15 %
24 %
20 %
12 %
28 %
22 %
20 %
17 %
18 %
14 %
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 29
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
6. EMPRESAS
6.1. Empresas de referência em 2010 (de acordo com nº de patentes)
Neste capítulo são descritas as empresas identificadas, anteriormente, como líderes
tecnológicos ou como empresas de referência nas áreas tecnológicas analisadas.
HUSKY INJECTION MOLDING SYSTEMS LTD.
www.husky.ca
Husky Injection Molding Systems (IHMs) é uma empresa privada envolvida na concepção/design, fabrico e fornecimento de equipamentos de moldagem por injecção para indústria de plásticos. A empresa dispõe de máquinas de moldagem por injecção, corredores quentes, robôs, moldes e sistemas integrados. Fornece máquinas Hylectric, quadloc máquinas, sistemas de pré‐formas e garrafas, câmaras quentes, sistemas de moldagem de magnésio e controladores altanium. Os equipamentos Husky são usados para fabricar uma ampla gama de produtos plásticos, como garrafas e tampas para bebidas, embalagens para alimentos, componentes médicos e peças electrónicas. Além disso, IHMs está envolvido na prestação de serviços em todo o ciclo de operações de processos industriais fornecendo, peças de reposição, ferramentas de software para monitorização de processos e sistemas de monitorização remoto, fabricação serviços de consultoria e formação técnica. A empresa opera na América do Norte, Ásia e Europa e Oriente Médio e África, estando sediada em Ontário, Canadá.
Fonte: Elaboração própria a partir das bases de dados da MarketLine
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 30
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
INGLASS‐HRSFLOW
www.inglass.it
A missão da empresa INglass‐HRSFlow consiste na procura de soluções inovadoras para simplificar os processos de produção, reduzir custos e melhorar a qualidade da parte final moldada. INglass‐HRSFlow tem uma abordagem inovadora, que envolve não só a análise preliminar do produto, mas também uma selecção cuidadosa da tecnologia mais adequada a utilização desde as fases de projecto muito inicial. Isto permite: • Reduzir o tempo de ciclo; • Reduzir a produção de resíduos, defeitos e desperdício. Benefícios que permitem reduções de custo a ser feita durante todo o processo de moldagem por inteiro. Em 2004, foi criada a divisão INglass dedicada à tecnologia de injecção de moldagem por compressão e à produção de grandes superfícies de policarbonato transparente, como uma alternativa aos produtos de vidro para a indústria automóvel (Plástico Vidro). Desde 2007, INglass‐HRSFlow visa optimizar o tempo de arrefecimento do molde, através da análise do seu processo de arrefecimento e, quando necessário, através de inserções feitas à medida usando a tecnologia de SLM ‐ Selective Laser Melting (metal em pó fundido a laser) .
Fonte: Elaboração própria a partir das bases de dados da MarketLine
NINGBO YUEFEI MOULD CO. LTD.
www.yfmould.com
Ningbo Yuefei Mould Co. Ltd., é especializada na concepção e fabrico de moldes de plástico por injecção de grandes dimensões, de precisão elevada/complexa e de longa duração, relativos à indústria automóvel, componentes da área electrónica, aplicações domésticas, entre outros. A empresa uma capacidade de produção anual de 450 a 600 unidades de moldes de injecção de médio e grande dimensão.
Fonte: Elaboração própria a partir das bases de dados da MarketLine
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 31
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
HON HAI PRECISION INDUSTRY COMPANY LIMITED
www.foxconn.com.tw
Hon Hai Precision Industry Company (Hon Hai), é uma empresa cuja actividade se centra na produção e comercialização de produtos electrónicos, sendo foxconn a marca dos seus produtos. O modelo de negócio da empresa está assente na integração vertical das capacidades mecânicas, eléctricas e ópticas, cobrindo uma vasta gama de soluções desde a produção de moldes, máquinas especiais, produção de componentes mecânicos, sistemas de montagem, entre outros. A produção de moldes e cunhos pela Hon Hai é essencialmente para utilização na sua própria área de produção. A produção destes moldes e cunhos são produzidos na China e Taiwan.
Fonte: Elaboração própria a partir das bases de dados da MarketLine
KRAUSSMAFFEI
www.kraussmaffei.com
A KraussMaffei é uma das maiores empresas produtoras de maquinaria para o
processamento de plásticos, que apresenta soluções tecnológicas chave para a
indústria dos plásticos e borracha, nomeadamente:
• Tecnologia de moldagem por injecção; • Maquinaria de processo; • Tecnologia de extrusão.
As máquinas de moldagem por injecção são uma das maiores unidades de
negócio da empresa KraussMaffei. A empresa oferece quatro séries de
máquinas de moldagem por injecção, que abrangem não apenas as aplicações
mais comuns, mas também a todas as variantes de processos e componentes
especiais.
As competências da empresa residem nas suas soluções inovadoras para a
indústria automóvel, de embalagem, de electrónica e aplicações da tecnologia
na área médica.
Nos últimos anos, a unidade de negócios ampliou sua base de conhecimento
especializado, investimento em sistemas de robótica e automação que
rapidamente reforçaram a sua posição da empresa no mercado.
Fonte: Elaboração própria a partir das bases de dados da MarketLine
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 32
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
ROVALMA SA
www.rovalma.com
Rovalma, S.A. desenvolve máquinas especiais para trabalhar metais, nomeadamente aço e outras ligas metálicas, para aplicações industriais. É uma empresa que aposta no conhecimento científico profundo das características dos materiais para encontrar soluções inovadoras de os trabalhar, manusear e aplicar.
Fonte: Elaboração própria a partir das bases de dados da MarketLine
SUMITOMO HEAVY INDUSTRIES, LTD.
www.shi.co.jp
Sumitomo Heavy Industries, é um fabricante global de máquinas industriais, abrangendo vários produtos que vão desde máquinas industriais de moldagem por injecção, a máquinas de precisão/corte ou a diversos componentes. A SHI responde a uma diversa gama de necessidades de todo o mundo, fornecendo produtos criados com recurso a tecnologias muito recentes, desenvolvida internamente.
Fonte: Elaboração própria a partir das bases de dados da MarketLine
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 33
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
6.2. Outras empresas relevantes
São ainda identificadas e descritas outras empresas consideradas relevantes, no sector de
actividade em estudo.
MILACRON LLC
www.milacron.com
A empresa Milacron fornece tecnologias de processamento de plásticos e fluidos industriais para os sectores automóvel, construção, bens de consumo, electrónico/telecomunicações, médico e de embalagens. Opera fundamentalmente através de quatro segmentos de negócios: • MILACRON para o segmento de moldes por injecção e extrusão ‐
tecnologias para todo o tipo de máquinas de moldagem por injecção visando processos com ciclos mais rápidos, limpos, silenciosos e energeticamente económicos;
• UNILOY para o segmento de moldagem por sopro ‐ design de máquinas para a indústria de embalagens, tanques de fuel e componentes automóveis;
• DME de tecnologias e ferramentas de molde ‐ fornece bases e componentes de moldes, cunhos e outros componentes para a indústria de moldes;
• CIMCOOL para fluidos industriais ‐ lubrificantes, coolers e inibidores de corrosão utilizados na produção de componentes metálicos.
Fonte: Elaboração própria a partir das bases de dados da MarketLine
CHENMING MOLD INDUSTRY CORP.
www.uneec.com
Chenming Mold Industry Corp. é um fabricante de equipamento de peças mecânicas. Utiliza técnicas de moldagem por pressão e por injecção para produzir os seus produtos. A empresa acompanha todo o ciclo do produto desde a sua fase inicial, integrando uma área de I&D para a criação de novos produtos e materiais, até à criação de protótipos, produção industrial, comercialização e distribuição.
Fonte: Elaboração própria a partir das bases de dados da MarketLine
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CORE MOLDING TECHNOLOGIES, INC.
www.coremt.com
Core Molding Technologies, Inc., é uma empresa especializada em moldes de plásticos reforçados com fibra de vidro e sheet molding compound (SMC). A empresa produz fibra de vidro reforçada de elevada qualidade e moldes com vinilester e poliéster para diversos mercados e aplicações, nomeadamente para o sector automóvel.
Fonte: Elaboração própria a partir das bases de dados da MarketLine
MOLD‐MASTERS LTD.
www.moldmasters.com
Mold‐Masters é uma empresa privada que fornece tecnologia e sistemas de moldes por injecção de canais quentes. A empresa projecta, fabrica e oferece apoio em sistemas de produção de moldes por injecção de canais quentes, controladores de temperatura, válvulas, filtros e electrónica. A empresa fornece produtos e componentes para a indústria automóvel, de electrodomésticos, de embalagem, de telecomunicações e para utilização médica.
Fonte: Elaboração própria a partir das bases de dados da MarketLine
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7. NOTÍCIAS
O presente Capítulo apresenta as notícias mais recentes, publicadas nas áreas dos Moldes,
Ferramentas Especiais e Processos de Injecção.
A Perfect Tool for Modeling a Mold with Multiple Curves and Flowing Shapes
MoldMaking Technology, Bob Cramblitt
1. 2. 3.
1. Bottles being filled in a Krones packaging line.
2. A Geomagic Studio model created by Krones from 3‐D scan data.
3. The final model of a bottle mold created using Geomagic Studio software.
4. 5.
4. The AutoSurface feature in Geomagic Studio enables Krones to convert polygon meshes into accurate surfaces
in one click.
5. Design‐intent modeling within Geomagic Studio enables objects to be modeled as they were originally designed.
In the detect contours phase, the software automatically defines the surface regions of the model, presenting
them in a variety of unique colors separated by red boundaries.
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Design‐intent modeling greatly reduces the time required to transform a bottle or mold into an
editable CAD model for further design and manufacturing.
When consumer meets bottle, it’s either love at first sight or immediate rejection according to
Krones AG, an international leader in designing and manufacturing beverage packaging.
Whether the consumer knows it or not, Krones maintains that “design is the most effective
means to attract people emotionally and to give a brand its distinctive character.”
With so much riding on the design of a bottle, it would make sense that brands would want to
hang on to the shapes that register an emotional pull on the buyer. But until recently,
recreating a classic design was more easily said than done.
As is the case with many other consumer products, some existing bottle and mold designs that
give a brand character don’t have CAD data associated with them. In the past, that would
mean painstakingly recreating the design with measurements, sketches and CAD modeling from
scratch. Today, it’s a fast and accurate reverse engineering process using 3‐D scanning and
Geomagic software.
Aesthetics Meets Efficiency
When recreating familiar or iconic designs, accuracy is everything. According to Krones,
Geomagic software helps the company ensure that design aesthetics are recaptured and that
the technical specifications are optimized for manufacturing lines used to produce the finished
bottles.
Reverse engineering with Geomagic Studio enables Krones to take full advantage of processes
such as stretch blow molding, which produces a plastic container from a preform or parison
that is stretched into a desired shape.
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Recreating the Physical World
The process at Krones begins with a Steinbichler Comet 5 white‐light scanner. A white‐light
scanner projects fringe patterns onto the object’s surface, which are then recorded by two
cameras. The captured data in Krones’ case is represented as triangulated meshes (STL data)
with edge lengths between 0.005 mm and 4 mm. A typical mold scan can contain as many as
two million triangles.
Within Geomagic Studio, the scan data goes through what Krones calls conditioning. This
involves filling any holes that might have been left by the scanning process and smoothing,
fitting, trimming, projecting and extending boundary edges as necessary. The result is an
accurate, water‐tight digital polygon model, which is then aligned and scaled to the proper size.
Two Modelers Meet Different Needs
Depending on specific design needs, Krones takes advantage of the two modelers available
within Geomagic Studio: one for organic shape modeling and one for design‐intent modeling.
Organic shape modeling in Geomagic Studio creates water‐tight NURBS surfaces when Krones
wants to create exact 3‐D replicas of existing bottles or molds. It is the perfect tool for
modeling an organic object such as a bottle or mold with multiple curves and flowing shapes.
Design‐intent modeling (formerly called Geomagic Fashion) within Geomagic Studio enables
objects to be modeled as they were originally designed—with a combination of primitive
shapes, swept features and freeform surfaces.
Using design‐intent modeling, Krones captures both dimensions and features such as radii,
spot‐bars, base contours, labeling areas, emblems and transitions from scan data. This ensures
the precise dimensioning required for tasks such as applying labels onto bottles. Design‐intent
modeling greatly reduces the time required to transform a bottle or mold into an editable CAD
model for further design and manufacturing.
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Completed models from Geomagic Studio are saved as standardized .igs or .stp files or
proprietary Geomagic .wrp files. The format depends on the department the files are going to
within Krones and the CAD program being used. There’s also the option of using Geomagic’s
Parametric Exchange program to create optimized, parametric CAD models that are editable
within popular CAD software.
Return of an Old Friend
The 3‐D models created in Geomagic Studio are the basis for further design processes at Krones
using either Solid Edge or Siemens NX CAD systems. To ensure quality, Geomagic Qualify 3‐D
inspection software is used to capture bottles during production runs and compare them to the
CAD model for deviations and to clarify Krones’ technical specifications.
The recreation of a successful bottle has implications throughout the product chain. For
designers and engineers at Krones, 3‐D scanning and processing using Geomagic software
means fast, flexible workflows that save time and enhance quality. Krones customers are
happy to see the reincarnation of a proven brand. Consumers, of course, are unaware of the
technological innovation that took place behind the scenes—they are just glad to see a familiar,
friendly shape on the store shelf.
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View a Fully Automated Work Cell Featuring the Newest Innovations in Injection
Molding, Robotics and Aluminum Tooling
www.phoenixproto.com
Learn more about Electric Injection Molding Machines and Aluminum Tooling in a production
environment before purchasing conventional tooling.
Toshiba Machine of Elk Grove, Illinois and Phoenix Proto of Centreville, Michigan have teamed
up to showcase Toshiba’s latest electric EC110SX Injection Molding machine running an
Aluminum Mold designed and built by Phoenix Proto in 2 weeks at the 2011 MD&M show.
Toshiba and Phoenix Proto brought together the additional services of 5 other companies to
create this unique demonstration for visitors to the Toshiba booth 3701.
Bob Lammon of Phoenix Proto feels that “Running an Aluminum Tool in an electric Injection
Molding machine is the perfect way to show case the cost benefits of both companies services.
Less energy consumption and reduced cost tooling equals an excellent way for medical
companies to reduce their overall cost of R&D into production. We think that visitors will be
surprised to know that we (Phoenix Proto) are expecting 1 million parts from this Aluminum
Tool.”
Clinton Aluminum provided the Hokotol brand Aluminum which Phoenix Proto used to create
the pillbox mold for the demonstration at the show. RJG provided the integrated pressure
sensors for the cavity. Bales Mold services provided the Nibore® coating process.
The pillbox to be given away at the MD&M show is made out of Polypropylene supplied by
Polyone of Avon Lake, Michigan. Toshiba is providing it’s new V50 controllers to run with the
Yushin robot that will be collecting the finished plastic parts.
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Tecnocraft Hits Lotus with Carbon Fiber
http://www.autoevolution.com/news/tecnocraft‐hits‐lotus‐with‐carbon‐fiber‐30988.html
Carbon fiber is now being used for more and more aftermarket
projects and we can only be happy that the world is receiving
lighter vehicles. One company that has developed an obsession
for this material is Tecnocraft.
The US aftermarket developer has now created a set of...
carbon fiber parts for the current Lotus range.
To be more specific, the goodies are destined for the Exige and Elise, two vehicle that already
worship the God of lightness when they leave the factory.
The company hasn’t released the info for the developments yet, so we don’t know how much
weight has been saved through this diet. However, until the company decided to let us know
how the parts affect the vehicle’s interaction with the scales, we can enjoy a gallery of images.
We hope you like the carbon fiber goodies as much as we do!
“At Tecnocraft, we realize there are a wide variety of methods and materials available in
developing carbon fiber products ‐ and while there may be cost‐cutting advantages in choosing
different grades of carbon, alternative vendors, and sources (even outsources), the Tecnocraft
staff production philosophy remains completely focused on [Quality and Commitment],” the
company brags on its website, explaining the creation process of its products.
“While our formulated carbon fiber/resin mold‐making and production techniques are kept
proprietary to our staff, we have briefly outlined and described our development methods to
highlight the Tecnocraft 'Tecnology' difference,” the aftermarket developer adds.
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How die/mould industry can lift Nigeria’s economy
http://thenationonlineng.net/web3/business/27363.html
Nigeria needs a virile die and moulds industry to propel its economic growth, winner of The Nigeria Prize for Science 2010, Prof. Akaehomen Ibhadode, has said. The birth of such industry will help conserve foreign exchange spent on die/mould importation, stimulate industrial production, enhance non‐oil exports, create wealth and generate employment, he further said. Ibhadode won the prize, jointly organised by the Nigeria LNG Limited and the Nigerian Academy of Science, with his work entitled: ‘Development of New Methods for Precision Die Design.’ He was presented to the public in Lagos on Tuesday. The Professor of Production Engineering at the University of Benin, in a paper he presented at the event, said modern manufacturers of automobile parts, and machines such as a kitchen blender, a paper clip or even an office pin, are made from dye and moulds. He explained that a mould is any hollow‐shaped container in which a solid product or article is made. It is used in a wide variety of manufacturing processes such as wire, rod and tube drawing, extrusion, forging and compression molding, and is, therefore, indispensable in any economy. Ibhadode said it was unfortunate that Nigeria does not have "this all‐important die/mould making technology." He added that dies/moulds used by the local plastics and bottle‐making factories and the few automobile parts makers are imported at very high cost. "Nigeria spent about N4billion in 2008 on the importation of dies and moulds. It is, therefore, important to develop the die/mould making industry. An investment of about N20million to N100million will give the capability for making a fairly wide range of dies/moulds. "As the Nigerian business environment is currently not very friendly, it will be advisable for entrepreneurs and, indeed, all manufacturers to ‘get out of the box’ and apply the Nollywood Model for success, which entails ingenuity, inventiveness, innovativeness, hardwork, and putting your fate into your hands without looking up to government. "Investment in new technologies and designing production for the international market are the other success strategies. ‘’We have lost so much ground in global competition despite our enormous endowments.’’
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Roland and MecSoft to Demonstrate Powerful New Design‐to‐Part Workflow at
SolidWorks World 2011
Roland DGA Corporation
New Solution Integrates Roland's MDX Series
Milling Machines with MecSoft's VisualMILL for
SolidWorks CAM Software.
Irvine, Calif. ‐ Roland DGA Corp. and MecSoft
Corp. are teaming up at SolidWorks World 2011 to
demonstrate a new design‐to‐part workflow for
applications ranging from functional and snap‐fit
prototypes to nonferrous metal molds and
biomedical solutions.
The workflow combines VisualMILL for SolidWorks CAM software from MecSoft with Roland
MDX milling machines, a powerful solution for producing parts and prototypes from a wide
range of non‐proprietary materials including aluminum, ABS, Acetal, Nylon, acrylic,
polycarbonate, wood, plaster and polystyrene.
"VisualMILL for SolidWorks is seamlessly integrated with our MDX series machines, making it
easy for designers and engineers to go from SolidWorks to finished prototype," said Pedro
Gonzalez, product manager for Roland. "The combined solution delivers smooth surface
finishes, high repeat accuracies and tight tolerances to exact specifications."
"Roland is a tremendous business partner that is truly committed to offering industry leading
rapid prototyping and rapid manufacturing solutions," said Gerald Hiller, director of
international sales for MecSoft. "Their MDX milling machines are based on 20 years of proven
Roland Subtractive Rapid Prototyping (SRP) technology and offer several advantages over 3D
printers."
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The Roland MDX line of 3D milling machines includes the MDX‐540, MDX‐40A and MDX‐15/20,
complete solutions including entry level CAM software for rapid prototyping and manufacturing
applications. Adding VisualMILL for SolidWorks improves on MDX technology by facilitating
more efficient machining strategies and higher throughput.
One of only six CAM products globally receiving Certified SolidWorks GOLD Partner status,
VisualMILL for SolidWorks is fully integrated inside SolidWorks which allows MDX users to
process their parts in a familiar design environment. With the addition of VisualMILL for
SolidWorks, MDX users also enjoy:
The ability to process native SolidWorks files without having to go through an error prone file
conversion process o Very efficient and logical workflow: all programming of the MDX is done
inside SolidWorks instead of having to export the part to Roland SRP Player CAM software o
Faster programming capabilities and more machining options for greater efficiently, higher
accuracy and faster throughput
MecSoft Corporation Headquartered in Irvine, Calif., MecSoft Corporation is a worldwide leader
of Computer Aided Manufacturing (CAM) software solutions. Our award winning software
products: VisualMILL(TM), VisualMILL for SolidWorks®, and RhinoCAM(TM) deliver powerful
and efficient solutions to users in the rapid manufacturing, mold making, aerospace,
automotive, woodworking, education and tool & die industries.
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ANEXO I – Listagem das patentes seleccionadas em 2010
Área dos Moldes ‐ Componentes
Nº Publicação Título Resumo Requerente RU2008127852A Metal mold for injection molding
and decoration of products, has tilting mechanism to connect tilting unit of frame clamp and protrusion rods in movable mold, tilting unit tilted with respect to projection rods during cleaning
Metal mold for injection molding and decoration of products, has tilting mechanism to connect tilting unit of frame clamp and protrusion rods in movable mold, tilting unit tilted with respect to projection rods during cleaning
NISSHA PRINTING KK (NSHA)
US20100013130A1 Molding method for thin parts Molding system for molding thin plastic part for e.g. Information handling system, has mold operable to compress material located in mold volume into another mold volume defined by mold such that introduced gas is removed from material
Dell Products L.P.,Round Rock,TX,US
CN201389950Y Injection moulding bicolour mould Injection molding bicolor mold, has control device controlling plastic cement to enter into injection molding cabin, where device comprises oil cylinder, slide block and wedge body, and cylinder driving wedge body to move slide block
Ningbo Mile Mold Manufacturing Co. Ltd.,Ningbo, Zhejiang 315033,CN
EP2162271A1 Motor driven mold Mold driving system for use in plastic molding machine, has controller that drives prime mover connected to mold cores inserted within respective cavities formed in mold sections for driving mold cores independently
Coeur Inc.,Lebanon TN 37087,US,100753505
JP04592135B2 Molding device Metal die apparatus has adjusting screw material rotatably matched to upper part of punch sleeve by adjustable state in vertical direction to adjust rotating rings in punch sleeve at upper part of punch body
AMADA CO LTD,JP
KR2010018539A The mold device for the polymer formation and method.
Mold apparatus for forming thermoplastic polymer material has bottom mold portion comprising induction heating unit that partially embedded in bottom mold portion and comprises coils wound on a stator in a vertical loop arrangement
SABIC INNOVATIVE PLASTICS IP B.V.
KR2010092834A The injection mold for the ventilation fan molding having the separable independence shape adaption cooling channel.
Injection mold for plastic fan for ventilation or cooling, includes independent conformal cooling blades, each with inlet and outlet ports, formed on blade molding unit of each of upper and lower molds
Industry‐Academic Cooperation Foundation Chosun University,KR
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US20100038649A1 Mold, manufacturing method of mold, method for forming patterns using mold, and display substrate and display device manufactured by using method for forming patterns
Mold for forming patterns used in manufacturing display substrate and display device includes polymer layer having amine group which is disposed on convex portion and recess portion
Samsung Electronics Co. Ltd.,Suwon‐si,KR
DE10223789B4 Strahlregler für eine sanitäre Auslaufarmatur
Spray regulator in injection‐molded plastics housing comprises cap slid onto housing to latch via cap stays and housing catches supplemented by removably inserted perforated disks.
Neoperl GmbH,DE
WO2010003473A2 Injection molding nozzle for an injection molding
Injection molding nozzle for supplying plastic melt to tool block and/or mold insert of injection molding tool, has thermally isolated insulating unit partially surrounding nozzle tip and resting against injection molding tool
GÜNTHER HEISSKANALTECHNIK GMBH,DE | GÜNTHER Herbert,DE | SOMMER Siegrid,DE
JP2010017929A An injection die and its manufacturing method
Injection die used in manufacture of injection molding plastics, has fixed mold and movable mold with circular outer peripheral surfaces provided with heat radiation structure for equalizing heat radiation of molten resin in cavity
UCHIYAMA SEIKO KK
WO2010021013A1 Metal mold adherence detector for injection molding machine
Metal mold adherence detector for injection molding machine, has electrical detection circuit formed by connecting electrodes and metal mold and power supply, that comprises detector for detecting adherence of metal mold
PASCAL ENGINEERING CORPORATION,JP | KIMURA Seiji,JP
JP2010162845A An injection die, a heat regulation unit, and the injection molding method
Injection die for use in injection molding apparatus during molding plastic product, has electro thermal heater and cooling circuit including surfaces alternately formed to oppose mold surface
SONY CORP
US20100252963A1 Systems and methods for cooling moving molds
Mold cooling system for cooling polymer product shaped in mold for manufacturing corrugated polymer pipe, has passageway connecting cooling fluid supply and cooling fluid return when moving manifold is received in connector
Scharf, Patrick E. | Kolbet, Randy A. | Lavereau, Robin | Benkovski, Konrad | Millward, Michael | Sheppard, Robert
KR1002021B1 Clamping device. Closure unit for molds or press tools includes tensile strap and closed contour frame made of fiber‐reinforced composite
EURICH Egbert,DE | KATZFUSS Klaus,DE
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CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Área dos Moldes ‐ Desenho / Estrutura
Nº Publicação Título Resumo Requerente IN237583B Plastic preforms molding
device for molding of objects in plastic material, contains extraction table for objects, which possesses grasping components able to extract objects from conditioning cups of conditioning turret
Plastic preforms molding device for molding of objects in plastic material, contains extraction table for objects, which possesses grasping components able to extract objects from conditioning cups of conditioning turret
CORAN M; PAVANETTO J; ZOPPAS M
KR201000394U The injection mold in which the move stability is improved.
Injection mold for manufacturing e.g. Plastic product, has seating surfaces whose corner parts are arranged with planar structure, and supporting unit i.e. Bolt, combined in each seating surface to support load of mold
A‐Tech Solution co. ltd,KR
JP04493360B2 Injection‐die structure Metallic mold structure for injection molding of plastic article, has air space used as heat insulation portion at surroundings of heat regulation path near cavity surface of movable mold\
MITSUBISHI PLASTICS IND LTD,JP
CN201516674U An injection mould with separating inserting piece
Injection mold for plastic product i.e. Sound panel of automobile, has separating inserting piece inserted in inserting piece frame that is placed on mold jade and inserting piece fixedly connected with inserting piece locking block
Qiaofeng Machinery Mould (Shenzhen) Co. Ltd.,Shenzhen, Guangdong 518000,CN
JP2010260297A A metal mold|die and the shaping|molding apparatus provided with this metal mold|die
Metal mold for molding apparatus for injection molding, includes metal mold main body which is heated while heater within heater pipe heats and melts molding material to be injected into cavity on main body
SATO SEIKI KK
KR201000084U Extrudate Gedankelyric stem. Plastic injection molding completion device, has horizontal movement unit horizontally moving to transfer direction of conveyer belt, and vertical movement unit installed in lower part of vertical transfer part
SHINYOUNG PRECISION CO. LTD.,KR
US20100040724A1 Injection molding metal mold and shaped article
Metal mold for injection molding of e.g. Instrument panel of vehicle, has cavity with junction portion that mutually connects divided resin flow paths, so that junction portion has thickness greater than that of circumference
PRIME POLYMER CO. LTD.,Minato‐ku, Tokyo,JP
US7695270B2 Mould for the injection moulding of a plastic piece and moulding method
Injection mould for plastic component in two or more sections e.g. For vehicle interior trim has retractable dividing partition with edge that fits without clearance against inner surface of mould cavity
Faurecia Interieur Industrie,Nanterre,FR
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CN1962230B Mould used to prepare plastic lens, has base and mould corn, and base includes capacity and hole at two ends and mould corn comprises main body, protrusion on top of main body and shaping part at top
Mould used to prepare plastic lens, has base and mould corn, and base includes capacity and hole at two ends and mould corn comprises main body, protrusion on top of main body and shaping part at top
HON HAI PRECISION IND CO LTD
CN201456340U Plastic injection mould for baffle with through hole
Plastic blow injection mold for baffle, has left mold and right mold provided with chambers and pouring ports, where depth of chamber of left mold and depth of chamber of right mold are different
Shanghai Tianyi Plastic Industrial Co. Ltd.,Shanghai 200443,CN
EP2184155A1 A mould for injection moulding of tubes having slim walls and being made of plastic.
Mold for injection molding of plastic tube for use in storing of e.g. Cosmetic product, has injection channel to receive injected material through lateral channel afforded between lateral surfaces contacted with projection and cavity
GIFLOR S.R.L.,36040 Grumolo delle Abbadesse VI,IT,100783431
CN201471640U Plastic mould Plastic mold, has lifter rod moving up and down in assembling channel so as to drive lifter head to push upwards or return downwards, and bosses projecting out of left and right sides of rod and extend from left and right sides of head
Zhongshan Pacific Master Precision Injection Ltd.,Zhongshan, Guangdong 528401,CN
CN101157263B High light plastic injection mold structure, has cavity module arranged in external die block, and compensating space equipped between contacting side surfaces of external die block and cavity die block
High light plastic injection mold structure, has cavity module arranged in external die block, and compensating space equipped between contacting side surfaces of external die block and cavity die block
UNIV SHANDONG
CN101422953B Injection molding providing mold for plastic article, has female mold portion including spacing portion spaced from male mold portion to define gap for transmitting air from mold cavity to air channel during injection molding
Injection molding providing mold for plastic article, has female mold portion including spacing portion spaced from male mold portion to define gap for transmitting air from mold cavity to air channel during injection molding
HON HAI PRECISION IND CO LTD
CN201516676U An injection mould with ejection mechanism
Injection mold for the manufacture of plastic products has inclined guiding post that is combined with a line to form an injection mold, and which is arranged with an ejection mechanism that is fixed or connected on the line
Qiaofeng Machinery Mould (Shenzhen) Co. Ltd.,Shenzhen, Guangdong 518000,CN
CN201516673U An injection mould with ring‐shaped taper positioning
Ring‐shaped taper positioning injection mold for concentric structured plastic product, has taper wedge block and line assembly comprising positioning taper surfaces provided with ring‐shaped tampers, respectively
Qiaofeng Machinery Mould (Shenzhen) Co. Ltd.,Shenzhen, Guangdong 518000,CN
US20100166907A1 Injection mold having workpiece trimming edge
Injection mold for fabricating plastic articles, has movable mold comprising movable core, where corner of movable core where injection channel communicates with molding cavity is in form of sharp protrusion or ridge
INNOLUX DISPLAY CORP.,Miao‐Li County,TW
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CN201525120U A mould device of injection stretch blow plastic hollow container product
Mold device for injection stretch blow plastic hollow container product, has stretching device comprising stretching bar for stretching bottle blank at inner side of mold core, and drive mechanism driving stretching bar
Taishan Xinhua Official Physic Package Co. Ltd.,Taishan, Guangdong 529200,CN
CN101780704A Bi‐layer injection moulding die Bi‐layer injection molding die for injection molding machine, has lower plastic flow holes communicating with pouring hole of lower layer cavity, and assisting die opening mechanisms arranged on sides of hot flow channel plate
Zhejiang Kaihua Moulds Co. Ltd.,CN
CN201538015U Injection mould core Injection mold core for use during processing of plastic bottle blank, has core fixing part, core working part and cooling water passage, where gap is formed between two semi‐cylinders of core working part
ZHANG Hong‐min (I),CN
KR2010095409A Plastics mold. Plastic mold has frame and board connected with frame, where multiple reinforcing ribs are provided in form of rectangular cells and are arranged in checkered form
KIM YOUNG MUN,KR
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UNIVERSITY OF MASSACHUSETTS LOWELL,US | NORTHEASTERN UNIVERSITY,US | YOON Sung‐hwan,US | CHA Nam‐goo,US | BARRY Carol M.F.,US | MEAD Joey L.,US | BUSNAINA Ahmed A.,US
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OSAKI T (OSAK)
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Hesuo United Science and Technology Stock Co. Ltd.,Taibei, Taiwan,TW
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ECIM TECHNOLOGIES BV
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EHSIM TEKNOLODZHIZ B V
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SIPA SOC IND PROGETTAZIONE,JP
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FAURECIA INTERIEUR INDUSTRIE Société en nom collectif,FR
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FAURECIA INTERIEUR INDUSTRIE Société en nom collectif,FR
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FAURECIA INTERIEUR INDUSTRIE Société en nom collectif,FR
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YE Jian‐yue (I),Wenzhou, Zhejiang 325000,CN
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Hehl, Karl
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Braun GmbH,61476 Kronberg/Taunus,DE,08424120
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TOYO KIKAI KINZOKU KK,JP
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ENRIETTI L
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INGLASS SPA
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JIN X
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NINGBO YUEFEI MOULD CO LTD
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FRANZ SCHITTELKOP GMB & CO.,Walldürn,DE
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Airsec S.A.S.,Choisy le Roi,FR
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Nissei Plastic Industrial Co. Ltd.,Hanishina‐Gun, Nagano‐Ken,JP
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ZH KOKUSAI KAGAKU SHINKO ZAIDAN,JP
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ENGEL AUSTRIA GmbH Schwertberg AT
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UBE MACHINERY CORPORATION LTD
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INGLASS SPA
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Zhejiang Sound Machinery Manufacture Co. Ltd.,CN
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FANUC LTD
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FOBOHA GMBH FORMENBAU,77716 Haslach,DE,100123988
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Schneider Electric Industry S.A.,FR
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Huizhou Jiantai Plastic Hardware Products Co. Ltd.,CN
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Günther Heisskanaltechnik GmbH,35066 Frankenberg,DE,101109891
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EMS‐CHEM AG
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TAISHAN XINHUA MEDICAL PACKAGING CO LTD
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FUJIKURA LTD
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CINPRES GAS INJECTION LTD,JP
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Injection molding, method for producing injection molding and die for injection molding
MITSUBA DENKI SEISAKUSHO KK,JP
CN101885252A Film for insert injection moulding and insert injection moulding method using the same
Film for insert injection molding comprises base film made of metal; first resin film layer laminated on side of base film; and second resin film layer laminated on a side of base film opposite to the side having first resin film layer
SAMSUNG ELECTRONICS Co. Ltd,KR
KR999490B1 The bi‐material junction injection molding method improving injection precision
Bi‐material junction injection molded method for e.g. electronic product, involves preparing resinous material, hardening thermosetting adhesive, and combining metal moldings and resinous material
PARK Min Hye,KR
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 84
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
EP2265425A1 METHOD AND APPARATUS FOR INJECTION‐MOLDING HOLLOW PLASTIC ARTICLES
Plastic hollow molded article injection‐molding method, involves injecting plastic melt along melt flow path, and pressing back excess portion of melt into screw antechamber of injection unit along another flow path formed by hot runner
BASF SE,67056 Ludwigshafen,DE,101005518
DE202010013439U1 Vorrichtung oder Anlage zur Herstellung eines FVK‐Bauteils
System for producing e.g. metal‐plastic connection, in injection molding machine, has tool mold closed to press semi‐finished fiber product into partial cavity under pressure, where fiber product is removed by opening tool mold
Wobbe Hans Dr. Ing.,DE
JP04494669B2 The manufacturing method of the plastic‐molding goods
Plastic molding goods manufacturing method involves forming recess on transfer surface by introducing compression gas which is joined to recess to form piled up layer of plastic molding goods
RICOH KK,JP
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 85
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
ANEXO II ‐ Clarke, Modet & Co Portugal
O Grupo Clarke, Modet & Cº, com 130 anos de experiência, é líder em Propriedade Intelectual
nos países de língua oficial Portuguesa e Espanhola e está actualmente presente em Portugal,
Espanha, Argentina, Brasil, Chile, Colômbia, México, Peru, Venezuela e Estados Unidos da
América.
Fazem parte dos quadros do Grupo Clarke, Modet & Cº cerca de 550 profissionais formados em
áreas tão distintas e complementares como: Engenharia, Biologia, Química, Direito, Economia,
Gestão, Línguas, etc.
A Clarke, Modet & Cº foi a primeira empresa do seu sector em todo o mundo a obter a
certificação ISO 9001:2000, sendo ainda na actualidade a única empresa do seu sector a operar
em Portugal cuja qualidade dos seus serviços se encontra reconhecida e certificada pela
referida Norma ISO 9001:2008.
Em Portugal, a Clarke, Modet & Cº tem escritórios próprios em Lisboa e no Porto, o que lhe
permite um acompanhamento personalizado e in loco das necessidades dos seus clientes.
Ambos os escritórios contam com um conjunto de profissionais altamente especializados e
capazes de dar resposta a todas as solicitações dos seus clientes.
Para além dos tradicionais serviços de tramitação e acompanhamento dos pedidos de registo
dos diferentes Direitos de Propriedade Industrial, serviços estes inerentes às funções
desempenhadas por um Agente Oficial da Propriedade Industrial, a Clarke, Modet & Cº
Portugal oferece também aos seus clientes um inovador, exclusivo e amplo conjunto de
serviços de Consultoria em Propriedade Intelectual e Inteligência Tecnológica, que visam o
apoio na protecção, gestão, vigilância e avaliação de activos de Propriedade Intelectual.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 86
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
É também de salientar que, do actual quadro de Recursos Humanos da Clarke, Modet & Cº
Portugal, resultado da forte e histórica ligação da empresa às Universidades, fazem parte um
conjunto de profissionais com experiências curriculares anteriores em Universidades,
precisamente ao nível do desempenho de funções de gestão de unidades e gabinetes de
protecção da Propriedade Industrial e Transferência de Tecnologia, logo mais conhecedores das
características e necessidades especificas das Universidades a respeito destas matérias.
No caso particular da equipa de Projecto, a Clarke, Modet & Cº Portugal seleccionou uma
equipa de Recursos Humanos que, por força da sua formação académica e especialização nas
áreas das Ciências e Engenharia, se encontra plenamente apta para prestar aos seus clientes
um serviço integral de aconselhamento e apoio técnico na área de Consultoria e Inteligência
Tecnológica.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 87
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
ANEXO III ‐ Disclaimer
A Classificação Internacional das Patentes (CIP) é realizada com base em critérios objectivos,
não obstante a interpretação dos documentos obtidos implica um certo grau de subjectividade.
O facto de a classificação dos diferentes documentos ser realizada por diferentes
Examinadores, provenientes de sectores técnicos distintos e de diversos países de origem (o
que também implica diferentes idiomas), poderá conduzir a alguma subjectividade e a
diferentes interpretações de alguns conceitos.
Durante as pesquisas apenas podem ser detectados os processos (tanto de patentes como de
modelos de utilidade) que já foram publicados. Na maioria dos países, a publicação dos pedidos
de modelos de utilidade ocorre após um prazo mínimo de 6 meses a contar da data do pedido,
e a publicação das patentes após um mínimo de 18 meses a contar da data do pedido. Devido a
esta condição, os pedidos de modelo de utilidade apresentados nos últimos 6 meses e os de
patente dos últimos 18 meses não são "detectáveis" no decorrer das pesquisas. No caso dos
Estados Unidos, os pedidos de patente são publicados após a respectiva concessão, pelo que
nestes casos, o período durante o qual os mesmos não são detectáveis é de 2 a 3 anos ou mais.
Em países, tais como a Itália (e alguns países da América Latina), existe um enorme atraso no
Instituto de Patentes, e os pedidos de patente podem demorar vários anos até serem
publicados.
É ainda importante acrescentar que na maioria dos casos, a publicação não ocorre antes de
terem decorrido 18 meses desde a data do pedido ou da data de prioridade (no caso de ser
reivindicada).
De referir que muitas empresas não requerem as patentes e/ou modelos de utilidade em seu
nome, utilizando para tal outras empresas ou pessoas físicas para instruir os respectivos
pedidos.
© 2011 Clarke, Modet & Cº Portugal. Todos os direitos reservados. 88
RELATÓRIO DE VIGILÂNCIA TECNOLÓGICA
CENTIMFE ‐ Centro Tecnológico da Indústria de Moldes, Ferramentas Especiais e Plásticos
Relatório de Vigilância Tecnológica
Janeiro 2011
Relatório realizado no âmbito do Projecto GAPI Tecnologia, co‐financiado ao abrigo do Sistema de Apoio a
Acções Colectivas
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