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Investigation of air entrapment and weld line defects in micro injection moulded thermoplastic elastomer micro rings

机译:微注塑成型热塑性弹性体微环中的空气滞留和焊接线缺陷的研究

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The micro injection moulding (μIM) process for the production of micro rings in thermoplastic elastomers (TPE) was investigated and optimized. The objective was to minimize the formation of air entrapments and the depth of micro weld line created on the surface of the TPE micro moulded rings. The defects were investigated by both experiments and numerical simulations of the μIM process. The results obtained from the simulation software were verified by comparison with the actual moulded parts. It was found that the simulation was accurate in the prediction of air entrapments and weld line placement. The μIM processing parameters had a large influence on the weld line depth and the air entrapment. In particular, it was found that low settings of the injection speed and of the clamping force increased the air evacuation from the cavity, thus minimizing the weld line depth and the presence of air entrapment defects.
机译:研究了热塑性弹性体(TPE)中微环生产的微注射成型(μIM)方法并进行了优化。目的是最大限度地减少在TPE微模型环表面上产生的空气夹带和微焊管的深度。通过实验和数值模拟来研究缺陷的μIM过程。通过与实际模塑部件比较验证了从仿真软件获得的结果。结果发现,在空气夹带和焊接线放置的预测中,模拟是准确的。 μIM处理参数对焊接线深度和空气截留有很大影响。特别地,发现喷射速度和夹紧力的低设置增加了从腔的空气排出,从而最小化焊接线深度和空气截留缺陷的存在。

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