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INJECTION MOULDING OF OPTICAL FUNCTIONAL MICRO STRUCTURES USING LASER STRUCTURED, PVD-COATED MOULD INSERTS

机译:使用激光结构的PVD涂层模具插入物注射模制光学功能微结构

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Micro structured optical plastics components are intensively used i. e. in consumer electronics, for optical sensors in metrology, innovative LED-lighting or laser technology. Injection moulding has proven to be successful for the large-scale production of those parts. However, the production of those parts still causes difficulties due to challenges in the moulding and demoulding of plastics parts created with laser structured mould inserts. A complete moulding of the structures often leads to increased demoulding forces, which then cause a breaking of the structures and a clogging of the mould. An innovative approach is to combine PVD-coated (physical vapour deposition), laser structured inserts and a variothermal moulding process to create functional mic8iiiro structures in a one-step process. Therefore, a PVD-coating is applied after the laser structuring process in order to improve the wear resistance and the anti-adhesive properties against the plastics melt. In a series of moulding trials with polycarbonate (PC) and polymethylmethacrylate (PMMA) using different coated moulds, the mould temperature during injection was varied in the range of the glass transition and the melt temperature of the polymers. Subsequently, the surface topography of the moulded parts is evaluated by digital 3D laser-scanning microscopy. The influence of the moulding parameters and the coating of the mould insert on the moulding accuracy and the demoulding behaviour are being analysed. It is shown that micro structures created by ultra-short pulse laser ablation can be successfully replicated in a variothermal moulding process. Due to the mould coating, significant improvements could be achieved in producing micro structured optical plastics components.
机译:微结构化光塑料组件密集使用I。 e。在消费电子产品中,用于计量,创新的LED照明或激光技术中的光学传感器。注射成型已被证明是为了成功的是这些部件的大规模生产。然而,由于用激光结构模具插入件产生的塑料部件的模塑和脱模,这些部件的生产仍然导致困难。结构的完全模塑通常导致增加的脱模力,然后造成破裂的结构和模具的堵塞。一种创新的方法是将PVD涂覆(物理气相沉积),激光结构刀片和变种模塑方法组合,以在一步法中产生功能性Mic8IIIRO结构。因此,在激光结构化过程之后施加PVD涂层,以提高耐磨性和抗粘附性能熔融熔体。在具有不同涂覆模具的聚碳酸酯(PC)和聚甲基丙烯酸甲酯(PMMA)的一系列成型试验中,注射期间的模具温度在玻璃化转变和聚合物的熔体温度的范围内变化。随后,通过数字3D激光扫描显微镜评估模塑部件的表面形貌。分析模塑参数和模具插入件对模塑精度的影响和脱模行为。结果表明,通过超短脉冲激光烧蚀产生的微结构可以在变量模制过程中成功地复制。由于模具涂层,在生产微结构化光塑料组分时可以实现显着的改进。

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