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Prediction of Tensile Modulus of 3D Four-directional Braided Composites with Transverse Cracks

机译:用横裂缝预测三维四方向编织复合材料的拉伸模量

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To a laminate model of 3D four-directional braided composites with periodic transverse cracks, a new normal stress function in weave direction is present. In this function, variations of stress with x and y are considered. By using the principle of minimum complementary energy, stress components in the representative unit are obtained. Tensile modulus of 3D four-directional braided composites with periodic transverse cracks is calculated by utilizing Hashin's average theory and the principle of minimum complementary energy. To demonstrate the solution, some examples are analyzed.
机译:对于具有周期性横裂的3D四方向编织复合材料的层压模型,存在在编织方向上的新正常应力函数。在该函数中,考虑使用X和Y的压力变化。通过使用最小互补能量的原理,获得代表单元中的应力分量。通过利用Hashin的平均理论和最小互补能量的原理来计算具有周期性横裂的3D四方向编织复合材料的拉伸模量。为了证明解决方案,分析了一些示例。

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