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Micromechanical model of the single fiber fragmentation test

机译:单纤维断裂试验的微力学模型

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A shear-lag model is developed for the analysis of single fiber fragmentation tests for the characterization of the mechanical properties of the fiber/matrix interface in composite materials. The model utilizes the relation for the loss in potential energy of Budiansky, Hutchinson and Evans. The model characterizes the interface in terms of an interfacial fracture energy and a frictional sliding shear stress. Results are obtained in closed analytical form. An experimental approach is proposed for the determination of the interfacial fracture energy and the frictional shear stress from simultaneously obtained data for the applied strain, the opening of a broken fiber and the associated debond length. The residual stresses are obtained as a part of the approach and enables the determination of in-situ fiber strength. (C) 2016 Elsevier Ltd. All rights reserved.
机译:建立了剪切滞后模型,用于分析单纤维破碎测试,以表征复合材料中纤维/基体界面的机械性能。该模型利用Budiansky,Hutchinson和Evans的势能损失关系。该模型根据界面断裂能和摩擦滑动剪切应力来表征界面。以封闭的分析形式获得结果。提出了一种实验方法,该方法可从同时获得的外加应变,断裂纤维的开度和相关的脱粘长度数据中确定界面断裂能和摩擦剪应力。残余应力是该方法的一部分,可以确定原位纤维强度。 (C)2016 Elsevier Ltd.保留所有权利。

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