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首页> 外文期刊>Experimental Mechanics >In Plane Displacement Formulation for Finite Cracked Plates Under Mode I Using Grid Method and Finite Element Analysis
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In Plane Displacement Formulation for Finite Cracked Plates Under Mode I Using Grid Method and Finite Element Analysis

机译:网格法和有限元分析的模式I下有限裂纹板平面位移公式

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摘要

A grid method is used to experimentally determine the in-plane displacement fields around a crack tip in a Single-Edge-Notch (SEN) tensile polyurethane specimen. Horizontal displacement u x-exp and vertical displacement u y-exp are expressed as functions of circular coordinates centred on the crack tip. These are compared with the approximate solutions of linear elastic fracture mechanics with a view to studying the applicability to polymers. The results show that this solution is not in agreement with the experiments at the focused on the vicinity of a crack tip. Taking this into account, an FEA program is developed with CAST3M for the purpose of comparing the experimental displacements and the numerical data. New formulations of displacements u x and u y are then developed. These formulations are derived from the principle of superposition and based on Arakawa’s formulation. With the displacement gradients obtained from the FEA and the new formulations, the determination of J-integrals is found to be in very good agreement with those derived from numerical calculation. Consequently, the proposed formulations can give displacement fields compatible with the J-integral calculation for the region near the crack tip. An application based on an experimental test is proposed to evaluate the performances of the proposed formulations.
机译:网格方法用于实验确定单边缘缺口(SEN)拉伸聚氨酯试样中裂纹尖端周围的平面内位移场。水平位移u x-exp 和垂直位移u y-exp 表示为以裂纹尖端为中心的圆坐标的函数。将这些与线性弹性断裂力学的近似解进行比较,以研究对聚合物的适用性。结果表明,该解决方案与针对裂纹尖端附近的实验不一致。考虑到这一点,使用CAST3M开发了FEA程序,目的是比较实验位移和数值数据。然后开发位移u x 和u y 的新公式。这些公式是从叠加原理得出的,并基于荒川的公式。利用从FEA和新公式获得的位移梯度,发现J积分的确定与从数值计算得出的位移非常吻合。因此,对于裂纹尖端附近的区域,所提出的公式可以提供与J积分计算兼容的位移场。提出了一种基于实验测试的应用,以评估所提出配方的性能。

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