首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >Torsional Impact Response of a Penny-Shaped Interface Crack in Bonded Materials With a Graded Material Interlayer
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Torsional Impact Response of a Penny-Shaped Interface Crack in Bonded Materials With a Graded Material Interlayer

机译:具有渐变材料夹层的粘结材料中细小形状的界面裂纹的扭转冲击响应

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摘要

In this paper, the dynamic response of a penny-shaped interface crack in bonded dissimilar homogeneous half-spaces is studied. It is assumed that the two materials are bonded together with such a inhomogeneous interlayer that makes the elastic modulus in the together with such a inhomogeneous interlayer that makes the elastic modulus in the direction perpendicular to the crack surface is continuous throughout the space. The crack surfaces are assumed to be subjected to torsional impact loading. Laplace and Hankel integral transforms are applied combining with a dislocation density function to reduce the mixed boundary value problem into a singular integral equation with a genreduce the mixed boundary value problem into a singular integral equation with a generalized Cauchy kernel in Laplace domain. By solving the singular integral equation numerically and using a numerical Laplace inversion technique, the dynamic stress intensity factors are obtained. The influences of material properties and interlayer thickness on the dynamic stress intensity factor are investigated.
机译:本文研究了键合异种均匀半空间中一分钱形界面裂纹的动力响应。假设这两种材料通过使弹性模量相同的不均匀夹层与使垂直于裂纹表面的方向上的弹性模量的不均匀夹层一起在整个空间中连续。假定裂纹表面承受扭转冲击载荷。应用Laplace和Hankel积分变换并结合位错密度函数,将混合边界值问题简化为奇异积分方程,并将混合边界值问题简化为Laplace域中具有广义Cauchy核的奇异积分方程。通过数值求解奇异积分方程并使用数值拉普拉斯反演技术,可以获得动应力强度因子。研究了材料性能和中间层厚度对动应力强度因子的影响。

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