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Improving Surface Quality of Microcellular Injection Molded Parts Through Mold Surface Temperature Manipulation With Thin Film Insulation

机译:通过薄膜绝缘处理模具表面温度来改善微孔注射成型零件的表面质量

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Microcellular injection molding offers many advantages such as material and energy savings, reduced cycle times, and excellent dimensional stability. However, typical surface characteristics of microcellular injection molded parts—such as gas flow and swirl marks and a lack of smoothness—have precluded the process from being used for applications where surface appearance is important. This article presents an insulator-assisted method that has been shown to improve the surface quality of microcellular injection molded parts significantly. By incorporating a thin film (75-225 μm) of poly-tetrafluoroethylene (PTFE) insulator on the mold surface, the polymer melt-insulator interfacial temperature can be manipulated and can be kept high enough during mold filling to reduce or eliminate swirl marks on the surface. The experimental results in terms of surface roughness and surface profile of conventional and microcellular injection molded parts with and without the insulator film are discussed. Thermal analyses of the corresponding microcellular injection molding experiments were performed to elucidate the correlation between film thickness, interfacial temperature, and the surface quality. The effect of insulator on the cooling time increase is also analyzed and presented.
机译:微孔注塑成型具有许多优势,例如节省材料和能源,缩短循环时间以及出色的尺寸稳定性。但是,微孔注射成型零件的典型表面特性(例如气流和旋涡痕迹以及缺乏光滑度)已使该工艺无法用于表面外观很重要的应用中。本文介绍了一种绝缘体辅助方法,该方法已被证明可以显着改善微孔注塑件的表面质量。通过在模具表面上加入聚四氟乙烯(PTFE)绝缘体薄膜(75-225μm),可以控制聚合物熔体-绝缘子的界面温度,并在填充模具时保持足够高的温度,以减少或消除模具上的涡旋痕迹。表面。讨论了具有和不具有绝缘膜的常规和微孔注射成型零件的表面粗糙度和表面轮廓方面的实验结果。进行了相应的微孔注塑实验的热分析,以阐明膜厚度,界面温度和表面质量之间的关系。分析并介绍了绝缘子对冷却时间增加的影响。

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