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Thermal fracture model for a functionally graded material with general thermomechanical properties and collinear cracks

机译:具有一般热机械特性和共线裂纹的功能梯度材料的热断裂模型

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In this article, a fracture mechanics model for functionally graded materials (FGMs) with general thermomechanical properties and collinear cracks under thermal loading is proposed. Assuming the thermomechanical properties of FGM strip to be general continuous functions of the coordinate in the thickness direction, the FGM strip is divided into a multilayered medium with the thermomechanical properties varying exponentially in each layer. Using the superposition method, the problem is reduced to a perturbation problem in which the crack surface tractions are the only external forces. Finally, the crack problem is reduced to integral equations with generalized Cauchy kernel and solved numerically. Some typical examples are discussed and the thermal stress intensity factors (TSIFs) for the collinear cracks are presented. The influences of the geometry parameters and the interaction between both collinear cracks on the TSIFs are discussed. Some important conclusions are drawn.
机译:本文提出了一种具有一般热力学性能和热载荷下共线裂纹的功能梯度材料(FGM)的断​​裂力学模型。假定FGM带的热机械性能是厚度方向上坐标的一般连续函数,则将FGM带分为多层介质,其中热机械性能在每一层中呈指数变化。使用叠加方法,将问题简化为扰动问题,其中裂纹表面牵引力是唯一的外力。最后,将裂纹问题简化为带有广义柯西核的积分方程并进行数值求解。讨论了一些典型示例,并给出了共线裂纹的热应力强度因子(TSIF)。讨论了几何参数以及共线裂纹之间的相互作用对TSIF的影响。得出一些重要的结论。

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