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An Analysis of Singularity in Single Fibre Pull-Out Test Using BEM

机译:使用BEM的单纤维拉出试验中的奇点分析

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The single fibre pull-out test is one of the major mesomechanical methods which are designed to measure the interface properties between the fiber and matrix in composites. An axisymmetrical boundary element method is used for the single fibre composite model to obtain the stress distributions at the fibre-matrix interface. The numerical results show that the interface radial and shear stress components, #sigma#_r and #tau#_(rz), are singular at the fiber entry and the embedded fiber end, and vary linearly with the axial distance, z, in a log-log plot. It is proposed that the stress components, #sigma#_r and #tau#_(rz), have the form z~#alpha#F_(ij)(#theta#), where #alpha# is the singularity exponent and F_(ij)(#theta#) is the angular distribution function. It is shown that the singularity exponent depends on the loading geometry of the model and the properties of the composite constituents, especially the Young's modulus ratio of fiber to matrix.
机译:单纤维拉出试验是主要的一种主要机械方法之一,旨在测量复合材料中光纤和矩阵之间的界面特性。轴对称边界元件方法用于单光纤复合模型,以获得光纤矩阵界面处的应力分布。数值结果表明,界面径向和剪切应力分量,#sigma#_r和#tau #_(rz)是光纤进入和嵌入式光纤端的奇异,并随着轴向距,z,在a中线性变化记录日志图。建议应力分量,#sigma#_r和#tau #_(rz),具有表单z〜#alpha#f_(ij)(#theta#),其中#alpha#是奇点指数和f_( IJ)(#Theta#)是角分配功能。结果表明,奇点指数取决于模型的装载几何体和复合成分的性质,尤其是纤维的杨氏模量比为矩阵。

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