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用于超声振动器微压纹的注塑成型复制性实验研究

Experimental Study of Injection Molding Replicability for the Micro Embossment of the Ultrasonic Vibrator.

作者信息

Zhu Tieli, Liu Ying, Yu Tongmin, Jin Yifei, Zhao Danyang

机构信息

School of Mechanical Engineering, Dalian University of Technology, Dalian 116024, China.

Mechanical Engineering Department, University of Nevada, Reno, NV 89557, USA.

出版信息

Polymers (Basel). 2022 Nov 8;14(22):4798. doi: 10.3390/polym14224798.

Abstract

It is challenging to fabricate micro features on an injection-molded polymer product. Ultrasonic vibration induced into micro-injection molding is helpful for flow of polymer melt. In this paper, a micro-injection mold integrated with ultrasonic vibration was designed and fabricated, and micro embossment was machined on the surface of the ultrasonic vibrator. Poly(methacrylic acid methyl ester) (PMMA) was used for injection molding experiments, with four ultrasonic power levels (0, 300, 600, and 900 W), three injection speed levels (60, 80, and 100 cm/s), two injection pressure levels (60 and 90 MPa) and a mold temperature of 60 °C. It was found that ultrasonic vibration perpendicular to the middle surface of the cavity is beneficial in forming transverse microstructure, but is not conducive to generating longitudinal microstructure. Increase in injection pressure can improve molding qualities for both the longitudinal micro groove and the transverse micro groove. Increase in injection speed is not conducive to forming the longitudinal micro groove but benefits formation of the transverse micro groove. When ultrasonic vibration is applied at the injection and packing stages, molding quality of the longitudinal micro groove becomes worse, while that of the transverse micro groove becomes better.

摘要

在注塑成型的聚合物产品上制造微特征具有挑战性。引入微注塑成型中的超声振动有助于聚合物熔体的流动。本文设计并制造了一种集成超声振动的微注塑模具,并在超声振动器表面加工了微压纹。使用聚甲基丙烯酸甲酯(PMMA)进行注塑实验,设置了四个超声功率水平(0、300、600和900 W)、三个注射速度水平(60、80和100 cm/s)、两个注射压力水平(60和90 MPa)以及模具温度为60°C。结果发现,垂直于型腔中间表面的超声振动有利于形成横向微观结构,但不利于产生纵向微观结构。注射压力的增加可以提高纵向微槽和横向微槽的成型质量。注射速度的增加不利于纵向微槽的形成,但有利于横向微槽的形成。当在注射和保压阶段施加超声振动时,纵向微槽的成型质量变差,而横向微槽的成型质量变好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a9f/9693639/895bcd5d4355/polymers-14-04798-g001.jpg

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