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首页> 外文期刊>International Journal of Computational Engineering Science(IJCES) >ON THE POISSON'S RATIO EFFECT ON MIXED-MODE STRESS INTENSITY FACTORS AND T-STRESS IN FUNCTIONALLY GRADED MATERIALS
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ON THE POISSON'S RATIO EFFECT ON MIXED-MODE STRESS INTENSITY FACTORS AND T-STRESS IN FUNCTIONALLY GRADED MATERIALS

机译:功能梯度材料中泊松比对混合模应力强度因子和T应力的影响

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摘要

Poisson's ratio is an important factor for fracture of functionally graded materials (PGMs). It may have significant influence on fracture parameters (e.g. stress intensity factors and T-stress) for a crack in FGMs under mixed-mode loading conditions, while its effect on such parameters js negligible in homogeneous materials. For instance, when tension load is applied in the direction parallel to material gradation, the fracture parameters may show significant influence on the Poisson's ratio. This paper uses a new formulation, so-called non-equilibrium formulation, of the interaction integral method. It also presents a few numerical examples where Poisson's ratio is assumed either constant or linearly varying function, and Young's modulus is assumed to be exponential or hyperbolic-tangent function.
机译:泊松比是功能梯度材料(PGM)断裂的重要因素。它可能对混合模式载荷条件下的FGM裂纹的断裂参数(例如应力强度因子和T应力)产生重大影响,而对此类参数的影响在均质材料中可以忽略不计。例如,当在平行于材料渐变的方向上施加拉伸载荷时,断裂参数可能会显示出对泊松比的显着影响。本文使用了相互作用积分法的新公式,即所谓的非平衡公式。它还提供了一些数值示例,其中泊松比被假定为常数或线性变化函数,而杨氏模量被假定为指数函数或双曲正切函数。

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