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首页> 外文期刊>International Journal of Solids and Structures >Explicit transient solutions for a mode III crack subjected to dynamic concentrated loading in a piezoelectric material
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Explicit transient solutions for a mode III crack subjected to dynamic concentrated loading in a piezoelectric material

机译:压电材料中动态集中载荷下III型裂纹的显式瞬态解

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摘要

In this Study, the transient response of a semi-infinite crack subjected to dynamic anti-plane concentrated loading in a hexagonal piezoelectric medium (6 mm) is investigated. The crack surfaces are assumed to behave as though covered with a conducting electrode. In order to give an insight into the effect of the electrode boundary condition, a simple half-plane problem is also discussed in the paper. A new fundamental solution for piezoelectric materials is proposed and the transient solution for the cracked body is determined by superposition of the fundamental solution in the Laplace transform domain. The fundamental solution to be used is the problem of applying exponentially distributed traction on the Crack faces in the Laplace transform domain. Exact analytical transient solutions for the dynamic stress intensity factor, the dynamic electric displacement intensity factor, and the dynamic energy release rate are obtained by using the Cagniard method of Laplace inversion and are expressed in explicit forms. Finally, numerical results for the transient solutions are evaluated and discussed in detail. (C) 2004 Elsevier Ltd. All rights reserved.
机译:在这项研究中,研究了在六角形压电介质(6毫米)中动态反平面集中载荷作用下的半无限裂纹的瞬态响应。假定裂纹表面表现为好像被导电电极覆盖。为了深入了解电极边界条件的影响,本文还讨论了一个简单的半平面问题。提出了一种新的压电材料基本解,并通过在Laplace变换域中叠加基本解来确定裂纹体的瞬态解。要使用的基本解决方案是在Laplace变换域中的Crack面上应用指数分布牵引力的问题。利用拉普拉斯反演的Cagniard方法获得了动应力强度因子,动电位移强度因子和动能释放速率的精确解析瞬态解,并以明确的形式表示。最后,对瞬态解的数值结果进行了评估和详细讨论。 (C)2004 Elsevier Ltd.保留所有权利。

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