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Effects of fiber orientation and anisotropy on tensile strength and elastic modulus of short fiber reinforced polymer composites

机译:纤维取向和各向异性对短纤维增强聚合物复合材料拉伸强度和弹性模量的影响

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摘要

An experimental study was conducted to investigate anisotropy effects on tensile properties of two short glass fiber reinforced thermoplastics. Tensile tests were performed in various mold flow directions and with two thicknesses. A shell-core morphology resulting from orientation distribution of fibers influenced the degree of anisotropy. Tensile strength and elastic modulus nonlinearly decreased with specimen angle and Tsai-Hill criterion was found to correlate variation of these properties with the fiber orientation. Variation of tensile toughness with fiber orientation and strain rate was evaluated and mechanisms of failure were identified based on fracture surface microscopic analysis and crack propagation paths. Fiber length, diameter, and orientation distribution mathematical models were also used along with analytical approaches to predict tensile strength and elastic modulus form tensile properties of constituent materials. Laminate analogy and modified Tsai-Hill criteria provided satisfactory predictions of elastic modulus and tensile strength, respectively.
机译:进行了一项实验研究,以研究各向异性对两种短玻璃纤维增​​强热塑性塑料的拉伸性能的影响。在不同的模具流向和两种厚度下进行拉伸测试。由纤维的取向分布引起的壳-核形态影响了各向异性的程度。拉伸强度和弹性模量随试样角度而非线性降低,并发现了Tsai-Hill准则将这些特性的变化与纤维取向相关联。评估了拉伸韧性随纤维取向和应变率的变化,并基于断裂表面微观分析和裂纹扩展路径确定了破坏机理。纤维长度,直径和取向分布数学模型也与分析方法一起使用,以预测组成材料的拉伸性能的拉伸强度和弹性模量。层压板的类比和修改后的Tsai-Hill标准分别提供了令人满意的弹性模量和拉伸强度预测。

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