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Delamination fracture in a functionally graded multilayered beam with material nonlinearity

机译:具有材料非线性的功能梯度多层梁中的分层断裂

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The present paper describes a theoretical study of delamination fracture in the functionally graded multilayered Crack Lap Shear (CLS) beam configuration with taking into account the nonlinear material behaviour. The fracture was analysed in terms of the strain energy release rate. The analytical solution derived is applicable for CLS with an arbitrary number of layers. Also, the delamination crack may be located arbitrary along the beam height. The mechanical behaviour of beam layers was modelled by a power-law stress-strain relation. It was assumed that the material in each layer is functionally graded along the thickness. Also, the material properties may be different in each layer. An analytical solution of the J-integral was derived in order to verify the nonlinear strain energy release rate analysis. The effects were evaluated of material gradient, crack location along the beam height and material nonlinearity on the strain energy release rate. It was shown that the analysis developed is a useful tool for the understanding of delamination fracture behaviour of functionally graded multilayered CLS beam configurations with material nonlinearity.
机译:本文介绍了一种理论研究,其中考虑了非线性材料的行为,在功能梯度多层裂纹搭接剪切(CLS)梁配置中发生分层断裂。根据应变能释放速率分析了裂缝。导出的分析解决方案适用于具有任意数量层的CLS。而且,分层裂纹可以沿着光束高度位于任意位置。梁层的力学行为是通过幂律应力-应变关系建模的。假定每层中的材料都沿厚度进行了功能分级。而且,每一层的材料特性可能不同。为了验证非线性应变能释放速率的分析,导出了J积分的解析解。评估了材料梯度,沿梁高度的裂纹位置以及材料非线性对应变能释放速率的影响。结果表明,所开发的分析方法对于了解具有材料非线性的功能梯度多层CLS梁配置的分层断裂行为是有用的工具。

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