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EVALUATION OF STRESS INTENSITY FACTORS AND T-STRESS IN FUNCTIONALLY GRADED MATERIALS USING THE INTERACTION INTEGRAL METHOD

机译:使用相互作用的整体法评估功能梯度材料中应力强度因子和T胁应

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The interaction integral method is revisited to evaluate both the mixed-mode stress intensity factors and the T-stress in functionally graded materials under mechanical loading. In particular, a non-equilibrium formulation is developed in an equivalent domain integral form of the interaction integral, which is naturally suitable to the finite element method. The material gradation is integrated into the element stiffness matrix using the generalized isoparametric formulation. The types of material gradation include continuum functions such as an exponential function, but the present formulation can be readily extended to micromechanical models. This paper presents a fracture problem with an inclined crack and assesses the accuracy of the present method compared with available semi-analytical solutions. The revisited interaction integral method is shown to be an accurate scheme for evaluating such parameters in functionally graded materials.
机译:重新开始相互作用积分方法,以在机械负载下评估功能梯度材料中的混合模式应力强度因子和T应力。特别地,非平衡制剂以相互作用的相互作用的等效结构域整体形式,其自然是适合于有限元方法的。使用广义的异戊酰胺制剂将材料灰度集成到元件刚度基质中。材料灰度的类型包括连续功能,例如指数函数,但是本制剂可以容易地扩展到微机械模型。本文呈现了倾斜裂缝的断裂问题,并评估了与可用半分析解决方案相比本方法的准确性。重新讨论的交互整数方法被示出为评估功能分级材料中这些参数的准确方案。

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