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Remarks on the energy release rate for an antiplane moving crack in couple stress elasticity

机译:关于耦合应力弹性反平面移动裂纹能量释放率的注记

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摘要

This paper is concerned with the steady-state propagation of an antiplane semi-infinite crack in couple stress elastic materials. A distributed loading applied at the crack faces and moving with the same velocity of the crack tip is considered, and the influence of the loading profile variations and microstructural effects on the dynamic energy release rate is investigated. The behavior of both energy release rate and maximum total shear stress when the crack tip speed approaches the critical speed (either that of the shear waves or that of the localized surface waves) is studied. The limit case corresponding to vanishing characteristic scale lengths is addressed both numerically and analytically by means of a comparison with classical elasticity results.
机译:本文涉及在偶应力弹性材料中反平面半无限裂纹的稳态传播。考虑了施加在裂纹面上并以相同裂纹尖端速度移动的分布载荷,并研究了载荷分布变化和微观结构效应对动能释放率的影响。研究了当裂纹尖端速度接近临界速度(剪切波的速度或局部表面波的速度)时,能量释放速率和最大总剪切应力的行为。通过与经典弹性结果的比较,在数值和分析上都解决了与消失的特征标尺长度相对应的极限情况。

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