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Strength prediction of multi-layer plain weave textile composites using the direct micromechanics method

机译:直接微力学方法预测多层平纹纺织复合材料的强度

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摘要

Previously developed micromechanical methods for stiffness and strength prediction are adapted for analysis of multi-layer plain weave textile composites. Utilizing the direct micromechanics method (DMM) via finite element modeling, three methods are presented: (a) direct simulation of a multi-layer plain weave textile composite; (b) micromechanical analysis of a single layer of interest from the force and moment resultants acting on that layer; and (c) application of the previously developed quadratic stress-gradient failure theory to the layer of interest. In comparison to direct modeling, the other two techniques show only 5% difference over a number of random test cases. Several practical design examples of strength prediction are included to illustrate the importance and accuracy of method implementation.
机译:以前开发的用于预测刚度和强度的微机械方法适用于多层平纹织物复合材料的分析。利用通过有限元建模的直接微机械方法(DMM),提出了三种方法:(a)多层平纹织物复合材料的直接仿真; (b)从作用在该单层上的力和力矩合力对单层进行微力学分析; (c)将先前开发的二次应力梯度破坏理论应用于目标层。与直接建模相比,其他两种技术在许多随机测试案例中仅显示5%的差异。包括几个强度预测的实际设计示例,以说明方法实施的重要性和准确性。

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