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Efficient and Precise Micro-Injection Molding of Micro-Structured Polymer Parts Using Micro-Machined Mold Core by WEDM

机译:使用WEDM的微加工模芯高效精确地对微结构化聚合物零件进行微注射成型

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摘要

In this paper, micro-structured polymer parts were efficiently and accurately fabricated by micro-injection molding using a micro-structured mold core machined by wire electrical discharge machining (WEDM). The objective was to realize low-cost mass production and manufacturing of micro-structured polymer products. The regular micro-structured mold core was manufactured by precise WEDM. The micro-structured polymer workpieces were rapidly fabricated by micro-injection molding and the effects of the micro-injection molding process parameters on replication rate and surface roughness of micro-structured polymers were systematically investigated and analyzed. It is shown that the micro-structured polymer can be rapidly and precisely fabricated by the proposed method. The experimental results show the minimum size machining error of the micro-structured mold core and the maximum replication rate of micro-formed polymer were 0.394% and 99.12%, respectively. Meanwhile, the optimal micro-injection molding parameters, namely, jet temperature, melt temperature, injection velocity, holding pressure and holding time were 195 °C, 210 °C, 40 mm/min, 7 Mpa and 5 s, respectively. The surface roughness at the groove bottom and top of the micro-structured polymer workpieces achieved minimum values of 0.805 µm and 0.972 µm, respectively.
机译:在本文中,通过使用电火花线切割加工(WEDM)加工的微结构模具芯,通过微注射成型有效而精确地制造了微结构聚合物部件。目的是实现低成本批量生产和制造微结构聚合物产品。常规的微结构模具型芯是通过精确的电火花线切割制造的。通过微注射成型快速制备了微结构聚合物工件,并系统地研究和分析了微注射成型工艺参数对微结构聚合物的复制速率和表面粗糙度的影响。结果表明,所提出的方法可以快速,精确地制备微结构聚合物。实验结果表明,微结构模具型芯的最小尺寸加工误差和微成型聚合物的最大复制率分别为0.394%和99.12%。同时,最佳的微注射成型参数,即喷射温度,熔融温度,注射速度,保持压力和保持时间分别为195°C,210°C,40 mm / min,7 Mpa和5 s。微结构化聚合物工件的凹槽底部和顶部的表面粗糙度分别达到最小值0.805 µm和0.972 µm。

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