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首页> 外文期刊>Journal of the Chinese Institute of Engineers >Visualization of counter pressure mechanism in gas-assisted injection molding process
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Visualization of counter pressure mechanism in gas-assisted injection molding process

机译:气体辅助注塑工艺反压机构的可视化

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摘要

Gas-assisted injection molding (GAIM) refers to injecting gas into the short shot melt during the filling stage. Compressed gas is used as the medium to push the melt and to provide the packing pressure. In GAIM, the hollow area and penetration length are the main factors that will affect the quality of molded parts. This study has applied a Gas Counter Pressure (GCP) mechanism and has discussed the effect of GCP in the GAIM process with in-mold visualization of this complex molding flow. This study introduces a counter pressure mechanism in a thick paper-clip-shaped cavity design. The flow field under different counter pressure conditions is observed by high-speed photography, the fiber orientations are analyzed with SEM, and the affected penetration length and hollow area are measured relatively. The experimental results show that when the GCP is applied to GAIM, although the hollow area is reduced, the penetration length will be increased, so as to make the quality of molded part more uniform and reduce the shrinkage. And a quantitative measuring method of two-stage penetration time span is proposed to get more in-depth discussion about the interactions between GCP and GAIM.
机译:气体辅助注射成型(GAIM)是指在填充阶段将气体注入短射熔体。压缩气体被用作推动熔体并提供填料压力的介质。在GAIM中,空心面积和穿透长度是影响模塑件质量的主要因素。本研究应用了气体反压(GCP)机制,并通过对这种复杂成型流程的模内可视化,讨论了GCP在GAIM工艺中的作用。本研究介绍了一种厚回形针型腔设计中的反压机构。通过高速摄影观察了不同背压条件下的流场,用扫描电镜分析了纤维取向,并相对测量了影响穿透长度和中空面积。实验结果表明,GCP应用于GAIM时,虽然中空面积减小,但熔透长度会增加,从而使成型件的质量更加均匀,减少收缩。为了更深入地讨论GCP和GAIM之间的相互作用,提出了一种两级侵彻时间跨度的定量测量方法。

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