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Analysis of Layered Structure Distinguished by Fiber Orientation in Injection Molding (1): Effect of Thermal Expansion Coefficient on Warpage Deformation Behavior

机译:注塑成型中纤维取向的层状结构分析(1):热膨胀系数对翘曲变形行为的影响

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摘要

One of the most important issues to guarantee high quality is the ability to predict the warpage deformation behavior of injection molded thermoplastics. This is especially true for the glass fiber (GF) reinforced thermoplastics, where anisotropy in fiber orientation can lead to the increase of warpage deformation.In this study, we observed cross sections and measured the multi-directional thermal expansion coefficients of GF reinforced polyamide 6 (PA6) samples of varying weight fractions of glass fiber and thicknesses. In photomicrographs of cross sections, the fiber orientation showed a symmetrical structure of three layers, skin/core/skin, which depended on the weight fraction of glass fiber and the thickness of the molding. The thermal expansion coefficient showed an anisotropy that depended on the fiber orientation. In addition, numerical results obtained using a model that considered the fiber orientation distribution at each layer thickness qualitatively agreed with the experimental measurements of warpage deformation.
机译:保证高质量的最重要问题之一是预测注塑热塑性塑料翘曲变形行为的能力。对于玻璃纤维(GF)增强的热塑性塑料尤其如此,其中纤维取向的各向异性会导致翘曲变形的增加。在这项研究中,我们观察了横截面并测量了GF增强聚酰胺6的多方向热膨胀系数(PA6)不同重量百分比的玻璃纤维和厚度的样品。在横截面的显微照片中,纤维取向显示出三层皮肤/芯/皮的对称结构,这取决于玻璃纤维的重量分数和模制品的厚度。热膨胀系数显示出取决于纤维取向的各向异性。另外,使用考虑了各层厚度的纤维取向分布的模型获得的数值结果与翘曲变形的实验测量定性一致。

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