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Comparison of crystallization characteristics and mechanical properties of polypropylene processed by ultrasound and conventional micro-injection molding

机译:超声和常规微注射成型加工聚丙烯结晶特性和力学性能的比较

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摘要

Ultrasound injection molding has emerged as an alternative production route for the manufacturing of micro-scale polymeric components, where it offers significant benefits over the conventional micro-injection molding process. In this work, the effects of ultrasound melting on the mechanical and morphological properties of micro-polypropylene parts were characterized. The ultrasound injection molding process was experimentally compared to the conventional micro-injection molding process using a novel mold, which allows mounting on both machines and visualization of the melt flow for both molding processes. Direct measurements of the flow front speed and temperature distributions were performed using both conventional and thermal high-speed imaging techniques. The manufacturing of micro-tensile specimens allowed the comparison of the mechanical properties of the parts obtained with the different processes. The results indicated that the ultrasound injection molding process could be an efficient alternative to the conventional process.
机译:超声注射成型已成为制造微级聚合物组分的替代生产路线,在那里它在传统的微注射成型过程中提供了显着的益处。在这项工作中,特征在于,超声波熔化对微聚丙烯部件的机械和形态学性能的影响。使用新型模具进行超声注射成型方法,与传统的微注塑方法进行了实验,这允许安装在两种机器上并为两种模制过程的熔体流动的可视化。使用常规和热高速成像技术进行流动前速度和温度分布的直接测量。微拉伸试样的制造允许比较用不同方法获得的部件的机械性能。结果表明,超声注射成型过程可以是常规过程的有效替代品。

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