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Mixed mode fracture separation in viscoelastic orthotropic media: numerical and analytical approach by the Mθv -integral

机译:粘弹性正交各向异性介质中的混合模式裂缝分离:Mθv积分的数值和分析方法

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摘要

An analytical and numerical procedure based on an independent integral path and finite element analysis for mixed-mode fracture in viscoelastic orthotropic media is developed. The separated method employs virtual mechanics fields induced by the classical singular analytical forms. The viscoelastic generalization uses a thermodynamic approach by defining an energy release rate only taking into account a perfect uncoupling between free and viscous energies. The implementation of the Mθ-integral in finite element software and its integration into the viscoelastic incremental formulation are presented. As results, the analytical and numerical solutions are compared by the way of the energy release rate in pure mode I, pure mode II and mixed modes. In shows that, the developed model lead to accurate and efficient separated fracture mode in viscoelastic materials.
机译:建立了基于独立积分路径和有限元分析的粘弹性正交异性介质混合模式断裂的解析和数值程序。分离的方法采用了由经典奇异解析形式引起的虚拟力学场。粘弹性概化使用热力学方法,通过仅考虑自由能和粘性能之间的完美解耦来定义能量释放率。提出了有限元软件中Mθ积分的实现及其与粘弹性增量公式的集成。结果,通过纯模式I,纯模式II和混合模式下的能量释放率比较了解析解和数值解。在显示中,开发的模型导致粘弹性材料中的精确和有效的分离断裂模式。

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