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首页> 外文期刊>Journal of polymer engineering >Replication of micro-structured injection molds using physical vapor deposition coating and dynamic laser mold tempering
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Replication of micro-structured injection molds using physical vapor deposition coating and dynamic laser mold tempering

机译:使用物理气相沉积涂层和动态激光模具回火来复制微结构注塑模具

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摘要

Plastics parts with micro-structured surfaces enable the development of innovative products such as optical components in sensors or light management systems for laser and LED applications. Moreover, micro-structured parts can be utilized in the medical and packaging industry for hydrophobic or antibacterial products. The production of micro-structured parts causes challenges in molding and demolding. Rough surfaces of the laser-structured mold inserts offer flow resistance during injection phase as well as increased demolding forces which cause failures of the replicated structures during ejection. Therefore, an innovative approach combines coated mold inserts by means of physical vapor deposition (PVD) and a highly dynamic laser tempering system to improve the replication of micro-structured plastics parts. Both uncoated and coated micro-structured mold inserts were used in a series of molding experiments by means of conventional and dynamic mold tempering. Based on the results, it can be shown that significant improvements of the replication of micro-structures of different sizes can be achieved by use of PVD mold coatings. This is attributed to the tribological interactions between coating and plastics melt. Furthermore, results indicate an influence of the thermal conductivity of PVD coatings to enhance replication quality.
机译:具有微结构表面的塑料零件使创新产品的开发成为可能,例如传感器中的光学组件或激光和LED应用的光管理系统。此外,微结构零件可在医疗和包装行业中用于疏水或抗菌产品。微结构零件的生产给模塑和脱模带来了挑战。激光结构的模具插件的粗糙表面在注射阶段会提供流动阻力,并且会增加脱模力,从而导致脱模过程中复制结构的故障。因此,一种创新的方法通过物理气相沉积(PVD)和高动态激光回火系统将涂覆的模具嵌件结合在一起,以改善微结构塑料零件的复制。通过常规的和动态的模具回火,在一系列的模制实验中都使用了未涂层的和涂层的微结构模具插件。根据结果​​,可以证明,通过使用PVD模具涂料可以显着改善不同尺寸的微结构的复制。这归因于涂层和塑料熔体之间的摩擦学相互作用。此外,结果表明,PVD涂层的热导率对提高复制质量有影响。

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