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Non-linear study of mode II delamination fracture in functionally graded beams

机译:功能分级梁模式II分层骨折的非线性研究

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A theoretical study was carried-out of mode II delamination fracture behavior of the End Loaded Split (ELS) functionally graded beam configuration with considering the material non-linearity. The mechanical response of ELS was modeled analytically by using a power-law stress-strain relation. It was assumed that the material is functionally graded transversally to the beam. The non-linear fracture was investigated by using the J-integral approach. Equations were derived for the crack arm curvature and zero axes coordinate that are needed for the J-integral solution. The analysis developed is valid for a delamination crack located arbitrary along the beam height. The J-integral solution was verified by analyzing the strain energy release rate with considering material non-linearity. The effects of material gradient, non-linear material behavior and crack location on the fracture were evaluated. The solution derived is suitable for parametric analyses of non-linear fracture. The results obtained can be used for optimization of functionally graded beams with respect to their mode II fracture performance. Also, such simplified analytical models contribute for the understanding of delamination fracture in functionally graded beams exhibiting material non-linearity.
机译:考虑到材料非线性度,在载荷的分割(ELS)功能梯度梁结构的模式II分层断裂行为中进行了理论研究。通过使用幂律应力 - 应变关系分析,ELS的机械响应被分析模拟。假设材料在横向横向上横向地渐变。通过使用J-Integral方法研究了非线性裂缝。为J-积分溶液所需的裂缝臂曲率和零轴坐标导出方程。开发的分析对于沿光束高度任意的分层裂缝有效。通过考虑材料非线性,通过分析应变能释放速率来验证J-Integral溶液。评价了材料梯度,非线性材料行为和裂缝位置对裂缝的影响。衍生的溶液适用于非线性裂缝的参数分析。所获得的结果可用于优化关于其模式II裂缝性能的功能梯度光束。此外,这种简化的分析模型有助于了解具有材料非线性的功能渐变光束中的分层骨折。

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