首页> 外文期刊>Journal of the Mechanics and Physics of Solids >A family of plane strain crack tip stress fields for interface cracks in strength-mismatched elastic--Perfectly plastic solids
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A family of plane strain crack tip stress fields for interface cracks in strength-mismatched elastic--Perfectly plastic solids

机译:强度不匹配的弹性-完全塑性固体中界面裂纹的平面应变裂纹尖端应力场族

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摘要

Asymptotic crack tip stress fields are developed for a plane strain crack located on the interface between two incompressible, elastic--perfectly plastic solids, with matching elastic properties, but mismatched yield strengths. The complete range of normal versus shear tractions on the interface at the crack tip is analyzed. In the limit as the yield strength mismatch vanishes the asymptotic stress fields for the interface crack approach established crack tip fields for homogeneous bodies. The crack tip stress fields are assembled from combinations of centered fans, constant stress sectors and elastic sectors. All the stresses within each material region are continuous while traction continuity is maintained across the interface. These asymptotic stress fields are verified by comparison with small-scale yielding finite element solutions obtained for various remote load mixity using boundary layer formulations (Rice, l967).
机译:渐进裂纹尖端应力场是为位于两个不可压缩的,弹性良好的塑性固体之间的界面上的平面应变裂纹而开发的,具有匹配的弹性,但屈服强度不匹配。分析了裂纹尖端界面上的法向与剪切牵引力的完整范围。在极限情况下,屈服强度不匹配消失,界面裂纹方法的渐近应力场建立了均质体的裂纹尖端场。裂纹尖端应力场是由中心扇,恒定应力扇区和弹性扇区的组合组成的。每个材料区域内的所有应力都是连续的,而在界面上保持牵引力的连续性。这些渐近应力场通过与使用边界层公式针对各种远程载荷混合获得的小规模屈服有限元解决方案进行比较而得到验证(Rice,1967)。

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