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Effect of Feature Spacing When Injection Molding Parts With Microstructured Surfaces

机译:注射成型具有微结构表面的零件时特征间距的影响

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The effects of microfeature spacing on the replication of thermoplastic elastomer features was investigated using micropillars with two diameters (10 mu m and 20 mu m) and three spacing ratios (0.5:1, 1:1, and 2:1). The tooling and part features were characterized for feature depth and height as well as feature definition using scanning electron microscopy and optical profilometry. Filling simulations provided insight into the process. Feature spacing significantly affected the replication of micropillars using a thermoplastic elastomer. This replication was competition between pressurization, relaxation, and cooling of the melt. Higher pressures generally improved feature replication, but did not always create perfect replication. Relaxation of the highly aligned polymer chains and cooling effects restricted filling, tended to reduce feature height, and increase feature diameters. (C) 2016 Society of Plastics Engineers
机译:使用具有两个直径(10微米和20微米)和三个间距比(0.5:1、1:1和2:1)的微柱,研究了微特征间距对热塑性弹性体特征复制的影响。使用扫描电子显微镜和光学轮廓测量法对工具和零件特征进行特征深度和高度以及特征定义的表征。填充仿真可以深入了解该过程。特征间距显着影响使用热塑性弹性体的微柱的复制。这种复制是在熔体的加压,松弛和冷却之间的竞争。较高的压力通常可以改善功能部件的复制,但并不总是可以创建完美的复制。高取向聚合物链的松弛和冷却效果限制了填充,倾向于减小特征高度并增加特征直径。 (C)2016年塑料工程师学会

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