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首页> 外文期刊>International Journal of Solids and Structures >Computation of mixed mode stress intensity factors for multiple axisymmetric cracks in an FGM medium under transient loading
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Computation of mixed mode stress intensity factors for multiple axisymmetric cracks in an FGM medium under transient loading

机译:瞬态载荷下FGM培养基中多轴对称裂缝混合模式应力强度因子的计算

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摘要

In the present study, mixed-mode dynamic stress intensity factors (DSIFs) for the multiple axisymmetric cracks in an FGM medium under transient in-plane loading are formulated. It is assumed that the mass density and the shear modulus of the medium vary exponentially along the z-axis. The solution to the problem weakened by prismatic and radial dynamic dislocations is first obtained with the aid of the Laplace and Hankel transforms. This solution is used to construct integral equations in the Laplace domain for a system of coaxial axisymmetric cracks, including annular and penny-shaped cracks. The integral equations are of Cauchy singular type, which are solved numerically to obtain the dislocation density on the faces of the cracks and the results are used to determine DSIFs for cracks. Numerical examples are provided to study the effects of nonhomogeneity parameter and axisymmetric crack type as well as the interaction of multiple cracks on the DSIFs. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在本研究中,配制了在短暂的内面载荷下的FGM培养基中的多轴对称裂缝的混合模式动态应力强度因子(DSIF)。假设介质的质量密度和剪切模量沿Z轴呈指数级别地呈现。首先通过Laplace和Hankel变换获得棱镜和径向动态位错削弱的问题的解决方案。该解决方案用于构建拉普拉斯域中的整体方程,用于同轴轴对称裂缝系统,包括环形和便士形裂缝。整体方程是Cauchy奇异类型,其在数值上进行解决以获得裂缝面上的位错密度,结果用于确定裂缝的DSIF。提供了数值示例以研究非均匀性参数和轴对称裂缝类型的影响以及DSIFs对多个裂缝的相互作用。 (c)2018年elestvier有限公司保留所有权利。

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