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Study on the Mechanism of Interfacial Friction Heating in Polymer Ultrasonic Plasticization Injection Molding Process

机译:聚合物超声塑化注射成型过程中界面摩擦加热机理的研究

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摘要

Ultrasonic Plasticization Injection Molding (UPIM) is an effective way to manufacture polymeric micro parts and has great potential for energy saving with processing polymeric materials of a small amount. To better control the UPIM process and improve the quality of micro parts, it is necessary to study the heat generation mechanism. In this paper, the interfacial friction heating process of UPIM was studied by finite element (FEM) simulation and experiment, and the temperature change in the friction interface was estimated. Then, the effects of different process parameters such as ultrasonic frequency and ultrasonic amplitude on the friction heating process were analyzed. The results showed that the rising trend of friction heating temperature was transient (finished within 1 s), and the change trend of FEM simulation was consistent with experimental results. Adjusting ultrasonic frequency and amplitude has a significant influence on the friction heating process. Increasing the ultrasonic frequency and amplitude can improve the efficiency of friction heating.
机译:超声波塑化注射成型(UPIM)是制造聚合物微零件的有效方法,并且在处理少量聚合物材料方面具有巨大的节能潜力。为了更好地控制UPIM过程并提高微零件的质量,有必要研究发热机理。本文通过有限元(FEM)仿真和实验研究了UPIM的界面摩擦加热过程,并估计了摩擦界面的温度变化。然后,分析了不同的工艺参数,如超声频率和超声振幅对摩擦加热过程的影响。结果表明,摩擦加热温度的上升趋势是短暂的(在1 s内完成),而FEM模拟的变化趋势与实验结果一致。调整超声波频率和振幅对摩擦加热过程有重要影响。增加超声频率和振幅可以提高摩擦加热的效率。

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