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Flow Properties of Polymer Melt in Longitudinal Ultrasonic-Assisted Microinjection Molding

机译:聚合物熔体在纵向超声波辅助显微注射模塑中的流动性能

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摘要

Microplastic parts are usually fabricated by microinjection molding (mu IM) which is an effective and low cost method. But the defects, such as short shot, often appear during fabricating plastic parts with high aspect ratio structures or complex shapes. a longitudinal ultrasonic- assisted microinjection molding (LU mu IM) method effectively improve the molding quality. In the paper, the mechanism that the ultrasonic vibration impacts on the polymer melt is investigated. Considering from the point view of energy effect, mechanical energy transmission, and mechanical energy conversion, which are divided from the energy of ultrasonic vibration, are analyzed. The model of energy transmission and a new rheological equation including the parameters of ultrasonic vibration are established to describe the rheological behavior of polymer melt in microcavity. The simulation results show that the ultrasonic vibration improves the viscosity field and the velocity field in complex shaped microcavity, and leads to a better filling capability and uniformity of the polymer melt. This research achievement can be used to guide the process flow and parameter selection of LUmIM. (C) 2016 Society of Plastics Engineers
机译:微塑料部件通常通过显微注射成型(MU IM)制造,其是一种有效和低成本的方法。但缺陷,如短射击,通常出现在制造具有高纵横比结构或复杂形状的塑料部件期间。纵向超声波辅助的显微注射模塑(Lu Mu IM)方法有效提高了模塑质量。在本文中,研究了超声波振动对聚合物熔体的影响。考虑从能量效应,机械能传动和机械能转换的点视图,分析除超声波振动的能量。建立了能量传递模型和包括超声振动参数的新流变方程,以描述微腔中聚合物熔体的流变行为。仿真结果表明,超声波振动改善了复杂形微腔中的粘度场和速度场,并导致了聚合物熔体的更好的填充能力和均匀性。该研究成果可用于指导Lumim的过程流程和参数选择。 (c)2016年塑料工程师协会

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