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Numerical analysis of crack-tip fields in functionally graded materials with a crack normal to the elastic gradient

机译:裂纹垂直于弹性梯度的功能梯度材料中裂纹尖端场的数值分析

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The nature of the singular field around the crack in functionally graded material (FGM) is analyzed parametrically using finite element method. The numerical simulations are carried out by varying the location of the crack in the graded region for different material gradients. Using linear material property variation in the gradient zone, the influence of material gradient and the crack position on the fracture parameters such as complex stress intensity factor (SIF) and energy release rate are studied. The crack opening displacement profiles of FGM are compared with the homogeneous and bimaterial counterparts. The analysis shows that the fracture parameters of FGM approach that of the bimaterial as the material gradient is increased, regardless of the position of the crack in the graded region. The extent of applicability of the homogenous crack tip fields around the crack in FGM is analyzed, and the results show that the size of the homogeneous field reduces with the increase in material gradient. Static fracture experiments are conducted on epoxy based FGM to determine complex SIF with electrical strain gages, using the homogeneous field equations to convert the strains to SIF. The measured SIF values compare favorably with the numerical results providing a limited experimental validation of the computations and the use of homogeneous field for FGM. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 20]
机译:使用有限元方法对功能梯度材料(FGM)中裂纹周围的奇异场的性质进行了参数分析。通过针对不同的材料梯度,通过改变梯度区域中裂纹的位置来进行数值模拟。利用梯度区域材料的线性特性变化,研究了材料梯度和裂纹位置对复合应力强度因子(SIF)和能量释放速率等断裂参数的影响。将FGM的裂纹开口位移曲线与均质和双材料的对应曲线进行了比较。分析表明,FGM的断裂参数随着材料梯度的增加而接近双材料的断裂参数,而不管裂纹在渐变区域中的位置如何。分析了FGM裂纹周围均匀裂纹尖端场的适用程度,结果表明,随着材料梯度的增加,均匀场的大小减小。使用均质场方程将应变转换为SIF,对基于环氧的FGM进行了静态断裂实验,以确定带电应变计的复杂SIF。所测得的SIF值与数值结果相比具有优势,为计算提供了有限的实验验证,并为FGM使用了均匀场。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:20]

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