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Shrinkage and Warpage Minimization of Glass-Fiber-Reinforced Polyamide 6 Parts by Microcellular Foam Injection Molding

机译:微孔泡沫注射成型使玻璃纤维增​​强聚酰胺6零件的收缩和翘曲最小化

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摘要

Shrinkage and warpage of injection-molded parts can be minimized by applying microcellular foaming technology to the injection molding process. However, unlike the conventional injection molding process, the optimal conditions of the microcellular foam injection molding process are elusive because of core differences such as gas injection. Therefore, this study aims to derive process conditions to minimize the shrinkage and warpage of microcellular foam injection-molded parts made of glass fiber reinforced polyamide 6 (PA6/GF). Process factors and levels were first determined, with experiments planned accordingly. We simulated designed experiments using injection molding analysis software, and the results were analyzed using the Taguchi method, analysis of variance (ANOVA), and response surface methodology (RSM), with the ANOVA analysis being ultimately demonstrating the influence of the factors. We derived and verified the optimal combination of process factors and levels for minimizing both shrinkage and warpage using the Taguchi method and RSM. In addition, the mechanical properties and cell morphology of PA6/GF, which change with microcellular foam injection molding, were confirmed.
机译:通过将微孔泡沫技术应用于注塑成型过程,可以最大程度地减少注塑成型零件的收缩和翘曲。然而,与常规注射成型工艺不同,由于诸如气体注射的芯差异,微孔泡沫注射成型工艺的最佳条件难以捉摸。因此,本研究旨在推导使玻璃纤维增​​强聚酰胺6(PA6 / GF)制成的微孔泡沫注塑件的收缩和翘曲最小的工艺条件。首先确定工艺因素和水平,并计划相应的实验。我们使用注塑成型分析软件对设计的实验进行了仿真,然后使用Taguchi方法,方差分析(ANOVA)和响应面方法(RSM)对结果进行了分析,ANOVA分析最终证明了这些因素的影响。我们使用Taguchi方法和RSM得出并验证了工艺因素和水平的最佳组合,以最小化收缩和翘曲。另外,证实了PA6 / GF的机械性能和细胞形态随微孔泡沫注射成型而改变。

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