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Mechanical properties of injection-molded short-fiber thermoplastic composites. Part 1: The elastic moduli and strengths of glass-filled poly(butylene terephthalate)

机译:注塑短纤维热塑性复合材料的机械性能。第1部分:玻璃纤维填充的聚对苯二甲酸丁二酯的弹性模量和强度

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摘要

The effects of processing and part geometry on the local mechanical properties of injection-molded, 30 wt% short-fiber-reinforced filled poly(butylene terephthalate) (PBT) are characterized by mechanical tests on specimens cut from rectangular plaques of different thicknesses injection molded at several different processing conditions. Stiffness data from tensile tests at 12.7-mm intervals on 12.7-mm-wide strips cut from injection-molded plaques-both along the flow and cross-flow directions-and flexural tests on these strips show consistency of plaque-to-plaque local properties. Also, in addition to the well-known anisotropic properties caused by flow-induced fiber orientation, injection-molded short fiber composites exhibit in-plane and through-thickness nonhomogeneity-as indicated by in-plane property variations, by differences between tensile and flexural properties, and by the flexural strength being significantly higher than the tensile strength. The sensitivity of these mechanical properties to process conditions and plaque geometry have also been determined: the flow-direction tensile modulus increases with fill time, the differences between flow and cross-flow properties decrease with increasing thickness, and both the flow and cross-flow flexural moduli decrease with increasing plaque thickness. While the flexural modulus is comparable to the tensile modulus, the flexural strength is significantly higher than the tensile strength.
机译:加工和零件几何形状对注塑成型的30 wt%短纤维增强填充聚对苯二甲酸丁二醇酯(PBT)的局部机械性能的影响通过对从不同厚度的矩形板切割而成的样品进行机械测试来表征在几种不同的加工条件下。沿流动方向和横流方向对从注塑板切割而成的12.7毫米宽条带上以12.7毫米间隔进行拉伸测试的刚度数据-以及在这些条带上的挠曲测试均显示了斑块对斑块局部特性的一致性。另外,除了由流动引起的纤维取向引起的众所周知的各向异性性质外,注射成型的短纤维复合材料还表现出面内和厚度方向的不均匀性,如面内性质变化所指示的那样,这是由于拉伸和弯曲之间的差异所致且抗弯强度明显高于抗拉强度。还确定了这些机械性能对工艺条件和斑块几何形状的敏感性:流向拉伸模量随填充时间的增加而增加,流向和错流特性之间的差异随厚度的增加而减小,流向和错流两者均减小弯曲模量随着噬菌斑厚度的增加而降低。尽管弯曲模量可与拉伸模量相比,但是弯曲强度显着高于拉伸强度。

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