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首页> 外文期刊>Journal of Materials Science >EFFECT OF PHYSICAL AND GEOMETRICAL FACTORS ON INTERFACIAL DEBONDING IN THE FIBRE PUSH-OUT TEST - A NEW STRENGTH-BASED MODEL
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EFFECT OF PHYSICAL AND GEOMETRICAL FACTORS ON INTERFACIAL DEBONDING IN THE FIBRE PUSH-OUT TEST - A NEW STRENGTH-BASED MODEL

机译:物理和几何因素对纤维拔出测试中界面剥离的影响-一种基于强度的新模型

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摘要

A strength-based model for the single-fibre push-out test has been developed. Using this model, the matrix stress, fibre stress and interfacial shear stress in a single fibre specimen subjected to push-out loading was considered. The effect of physical and geometrical factors on the stress distribution were evaluated in terms of the influence of relative moduli and sizes of the matrix and fibre, respectively. The propensity for debonding crack initiation at the interface arising from matrix yielding (due to normal stress) and interfacial yielding (due to shear stress) has been determined. The influence of these on the location of debonding crack initiation and the maximum debond force has also been studied. [References: 17]
机译:已经开发出基于强度的单纤维推出测试模型。使用该模型,考虑了单个纤维样本在承受顶出载荷时的基体应力,纤维应力和界面剪切应力。分别根据相对模量和基质和纤维尺寸的影响,评估了物理和几何因素对应力分布的影响。已经确定了由于基体屈服(由于法向应力)和界面屈服(由于剪切应力)引起的界面处裂纹萌生的倾向。还研究了这些因素对剥离裂纹萌生位置和最大剥离力的影响。 [参考:17]

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