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Injection molding of products with functional surfaces by micro-structured, PVD coated injection molds

机译:通过微结构,PVD涂层注塑模具对具有功能表面的产品进行注塑

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摘要

Molding of micro structures by injection molding leads to special requirements for the molds e.g. regarding wear resistance and low release forces of the molded components. At the same time it is not allowed to affect the replication precision. Physical vapor deposition (PVD) is one of the promising technologies for applying coatings with adapted properties like high hardness, low roughness, low Young’s modulus and less adhesion to the melt of polymers. Physical vapor deposition technology allows the deposition of thin films on micro structures. Therefore, the influence of these PVD layers on the contour accuracy of the replicated micro structures has to be investigated. For this purpose injection mold inserts were laser structured with micro structures of different sizes and afterwards coated with two different coatings, which were deposited by a magnetron sputter ion plating PVD technology. After deposition, the coatings were analyzed by techniques regarding hardness, Young’s modulus and morphology. The geometries of the micro structures were analyzed by scanning electron microscopy before and after coating. Afterwards, the coated mold inserts were used for injection molding experiments. During the injection molding process, a conventional and a variothermal temperature control of the molds were used. The molded parts were analyzed regarding roughness, structure height and structure width by means of laser microscopy.
机译:通过注射成型对微结构进行成型导致对模具的特殊要求,例如:关于模制部件的耐磨性和低脱模力。同时,不允许影响复制精度。物理气相沉积(PVD)是应用具有高硬度,低粗糙度,低杨氏模量和对聚合物熔体的附着力低等适应性的涂料的有前途的技术之一。物理气相沉积技术允许在微结构上沉积薄膜。因此,必须研究这些PVD层对复制的微结构的轮廓精度的影响。为此目的,用不同尺寸的微结构对激光模具插入件进行激光结构化,然后用磁控溅射离子镀PVD技术沉积两种不同的涂层。沉积后,通过有关硬度,杨氏模量和形态的技术对涂层进行分析。在涂覆之前和之后,通过扫描电子显微镜分析微观结构的几何形状。之后,将涂覆的模具插件用于注塑实验。在注塑过程中,使用了常规的和可变温度的模具控制。通过激光显微镜分析成型零件的粗糙度,结构高度和结构宽度。

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