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A virtual crack extension method for thermoelastic fracture using a complex-variable finite element method

机译:一种使用复合变量有限元法的热弹性骨折的虚拟裂缝扩展方法

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摘要

A virtual crack extension (VCE) technique using the complex-variable finite element method (ZFEM) has been developed and demonstrated for thermoelastic fracture problems. This VCE approach provides an accurate computation of the energy release rate (G) as a byproduct of the complex-variable finite element analysis and obviates the use of energy conservation integrals such as the J-integral. The crack extension is induced using imaginary coordinates and a single global estimate of G is obtained as a sum of the element contributions. Numerical examples are provided for 2D, including a bimaterial cracked plate, axisymmetric, and 3D structures. The results indicate that the complex-variable VCE approach is of the same accuracy as the J-integral formulation. (C) 2017 Elsevier Ltd. All rights reserved.
机译:已经开发了一种虚拟裂缝扩展(VCE)技术,并对热弹性骨折问题进行了开发和证明和证明了使用复合变量有限元方法(ZFEM)。 该VCE方法提供了能量释放速率(G)作为复合变量有限元分析的副产物的准确计算,并且消除了使用节能积分,例如J-Intional。 使用假想坐标诱导裂缝延伸,并获得G的单个全局估计,作为元素贡献的总和。 为2D提供数值示例,包括双层裂纹板,轴对称和3D结构。 结果表明,复合变量VCE方法与J-Integral制剂的准确性相同。 (c)2017 Elsevier Ltd.保留所有权利。

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