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Effect of interfacial debonding and matrix cracking on mechanical properties of multidirectional composites

机译:界面剥离和基体开裂对多向复合材料力学性能的影响

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In composites, debonding at the fiber-matrix interface and matrix cracking due to loading or residual stresses can effect the mechanical properties. Here three different architectures 3-directional orthogonal, 3-directional 8-harness satin weave and 4-directional in-plane multidirectional composites - are investigated and their effective, properties are determined for different volume fractions using unit cell modeling with appropriate periodic boundary conditions. A cohesive zone model (CZM) has been used to simulate the interfacial debonding, and an octahedral shear stress failure criterion is used for the matrix cracking. The debonding and matrix cracking have significant effect on the mechanical properties of the composite. As strain increases, debonding increases, which produces a significant reduction in all the moduli of the composite. In the presence of residual stresses, debonding and resulting deterioration in properties occurs at much lower strains. Debonding accompanied with matrix cracking leads to further deterioration in the properties. The interfacial strength has a significant effect on debonding initiation and mechanical properties in the absence of residual stresses, whereas, in the presence of residual stresses, there is no effect on mechanical properties. A comparison of predicted results with experimental results shows that, while the tensile moduli E-11, E-33 and shear modulus G(12) match well, the predicted shear modulus G(13) is much lower.
机译:在复合材料中,由于载荷或残余应力导致的纤维-基体界面处的脱粘和基体开裂会影响机械性能。在这里,研究了三种不同的体系结构3向正交,3向8线束缎纹编织和4向平面内多向复合材料,并使用具有适当周期性边界条件的晶胞模型对不同体积分数的有效性能进行了确定。内聚力区域模型(CZM)已用于模拟界面剥离,而八面体剪切应力破坏准则用于基体开裂。脱胶和基体开裂对复合材料的机械性能有重要影响。随着应变的增加,脱粘作用也会增加,这会大大降低复合材料的所有模量。在存在残余应力的情况下,在低得多的应变下发生剥离并导致性能下降。脱胶伴随基体裂纹导致性能进一步下降。在没有残余应力的情况下,界面强度对脱粘的开始和机械性能有显着影响,而在存在残余应力的情况下,对机械性能没有影响。预测结果与实验结果的比较表明,虽然拉伸模量E-11,E-33和剪切模量G(12)匹配良好,但预测剪切模量G(13)却低得多。

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