Non-linear numerical study of the single-fiber fragmentation test. Part I: Test mechanics

H. Ho, L.T. Drzal
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引用次数: 18

Abstract

A non-linear finite element method is used to investigate the mechanics of the test procedure of single-fiber fragmentation test of AS4/Epon 828 composite containing an interphase. Stress transfer between the fiber and matrix for fragments created at different matrix strain state is evaluated. The ineffective fiber length was found to vary with the matrix strain state. It is found that the stress transfer and local stress fields remain unchanged for constant, linear and power-law interphase property gradients as long as the average interphase properties are the same. Causes and effects of debonding and debond propagation are examined through the evaluation of the stress fields near the fiber breaks. The effect of thermal residual stresses is examined. Stress transfer for fragments of shorter length than the critical length is studied. Physical meaning of the critical length is discussed.

单纤维破碎试验的非线性数值研究。第一部分:测试机制
采用非线性有限元法研究了含界面相AS4/Epon 828复合材料单纤维破碎试验过程的力学特性。分析了在不同基体应变状态下产生的破片在纤维和基体之间的应力传递。失效纤维长度随基体应变状态的变化而变化。研究发现,只要平均相性质不变,应力传递和局部应力场在恒定、线性和幂律相性质梯度下保持不变。通过对纤维断口附近应力场的评估,研究了剥离和剥离传播的原因和影响。研究了热残余应力的影响。研究了短于临界长度碎片的应力传递。讨论了临界长度的物理意义。
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