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Numerical study of the single fibre push-out test. II. Influence of materials and test variables

机译:单纤维推出试验的数值研究。二。材料和测试变量的影响

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摘要

The effects of material properties and specimen geometric factors on stress transfer across the fibre-matrix interface in the fibre push-out test are evaluated based on an axisymmetric boundary element analysis. It is shown that the Young's modulus ratio of fibre to matrix, the effective fibre volume traction, the specimen thickness and the support hole size influence significantly the overall interface stress profiles and the maximum stress values at free edges. The first two material parameters, in particular, dictate where the maximum interface shear stress occurs between the loaded and supported fibre ends. The implication is that under certain circumstances the interface debond may initiate from the supported fibre end, as opposed to the usual loaded end debonding, if assuming the maximum interface shear stress criterion. A similar two-way debond phenomenon is predicted using a shear lag analysis. (Applicable to polymer- and ceramic-matrix composites.)
机译:基于轴对称边界元分析,评估了材料特性和样品几何因素对纤维推出测试中跨纤维-基体界面应力转移的影响。结果表明,纤维与基体的杨氏模量比,有效纤维体积牵引力,试样厚度和支撑孔尺寸显着影响整体界面应力分布和自由边缘处的最大应力值。特别是前两个材料参数规定了最大的界面剪切应力在负载的和支撑的纤维端之间发生的位置。这意味着在某些情况下,如果假定最大界面剪切应力准则,则与通常的负载端剥离相反,界面剥离可能会从受支撑的纤维端开始。使用剪切滞后分析可预测类似的双向剥离现象。 (适用于聚合物和陶瓷基复合材料。)

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