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首页> 外文期刊>International Journal of Fracture >A thermomechanical fracture modeling and simulation for functionally graded solids using a residual-strain formulation
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A thermomechanical fracture modeling and simulation for functionally graded solids using a residual-strain formulation

机译:使用残余应变公式的功能梯度固体的热机械断裂建模和模拟

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This paper addresses mixed-mode crack growth in two-dimensional functionally graded solids under thermomechanical loads, and investigates the effect of mechanical and thermal loads as well as the T-stress on their crack growth behavior. A novel residual strain-based formulation in the interaction integral method is developed and used for the accurate evaluation of mixed-mode stress intensity factors and/or the T-stress. Simulation of mixed-mode crack propagation in functionally graded materials including solid oxide fuel cells under thermomechanical loads is performed by means of the finite element method and the generalized interaction integrals in conjunction with a remeshing algorithm. An iterative procedure is used for crack growth simulation including the calculation of mixed-mode stress intensity factors and/or the T-stress by means of the generalized interaction integral method, determination of crack growth direction and crack initiation condition based on selected fracture criteria, and local automatic remeshing along the crack path. The present approach employs a user-defined crack increment at the beginning of the simulation. Crack trajectories and fracture parameters obtained by the present simulation for thermomechanical loads are assessed for some numerical examples in comparison with those for mechanical loads.
机译:本文讨论了在热机械载荷下二维功能梯度固体中的混合模式裂纹扩展,并研究了机械载荷和热载荷以及T应力对其裂纹扩展行为的影响。在相互作用积分法中开发了一种新的基于残余应变的公式,并将其用于精确评估混合模式应力强度因子和/或T应力。借助有限元方法和广义相互作用积分并结合重网格算法,对包括机械氧化物燃料电池在内的功能梯度材料在热机械载荷下的混合模式裂纹扩展进行了模拟。迭代过程用于裂纹扩展模拟,包括通过广义相互作用积分法计算混合模式应力强度因子和/或T应力,根据所选断裂准则确定裂纹扩展方向和裂纹萌生条件,并沿着裂缝路径进行本地自动重划。本方法在模拟开始时采用了用户定义的裂纹增量。通过一些模拟算例评估了通过本模拟获得的热机械载荷的裂纹轨迹和断裂参数,并与机械载荷进行了比较。

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