首页> 外文期刊>Journal of Applied Mechanics and Technical Physics >DETERMINING THE STRESS-STRAIN STATE OF ELASTIC PLASTIC SOLIDS WITH A LATERAL CRACK-LIKE DEFECT WITH THE USE OF A MODEL WITH A LINEAR SIZE
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DETERMINING THE STRESS-STRAIN STATE OF ELASTIC PLASTIC SOLIDS WITH A LATERAL CRACK-LIKE DEFECT WITH THE USE OF A MODEL WITH A LINEAR SIZE

机译:使用线性尺寸模型确定具有横向裂纹样缺陷的弹性塑性固体的应力-应变状态

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摘要

A model of a physical section that describes stress-strain states in elastic-plastic solids weakened by cracks is proposed. The problem of plane deformation and the stress state of a solid of an infinite size of an arbitrary geometry, weakened by a physical section, is solved. It comes down to a system of two variational equations with respect to displacement fields in the parts of the solid bordering the interaction layer. For a material whose properties are close to those of a D16T alloy, the linear parameter introduced into the crack model is estimated, and the critical conditions of solids with lateral cracks in the case of a normal detachment are determined.
机译:提出了一个物理截面模型,该模型描述了裂纹削弱的弹塑性固体中的应力应变状态。解决了由物理截面削弱的,任意尺寸的无限大小的实体的平面变形和应力状态的问题。归结为两个变量方程的系统,这些变量方程是关于与相互作用层接壤的实体部分中的位移场的。对于性能接近于D16T合金的材料,估计引入裂纹模型的线性参数,并确定在正常脱离情况下具有横向裂纹的固体的临界条件。

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