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首页> 外文期刊>International Journal of Fatigue >Finite element study of cyclic plasticity near a subsurface inclusion under rolling contact and macro-residual stresses
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Finite element study of cyclic plasticity near a subsurface inclusion under rolling contact and macro-residual stresses

机译:滚动接触和宏观残余应力下地下夹杂物附近循环可塑性的有限元研究

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摘要

This work investigates plastic deformation around non-metallic inclusions in rolling contact fatigue applications. Subsurface stresses from Hertzian theory are applied in form of far-field loading on an elasto-plastic micro-mechanical model of an isolated inclusion. Initial and cyclic micro-scale plasticity are quantified, assuming linear kinematic hardening for the steel matrix and elastic or elastic perfectly plastic behavior for the inclusion. The accumulated plastic strain and cyclic plasticity are evaluated in the matrix. The effect of the yield strength on the elasto-plastic behavior of the matrix around the inclusions is investigated along with the effect of superimposed macro-residual stresses.
机译:这项工作研究了滚动接触疲劳应用中的非金属夹杂物周围的塑性变形。赫兹理论的地下应力以隔离夹杂物的弹塑性微机械模型的远场负荷形式应用。初始和循环微尺度可塑性是量化的,假设用于钢基质的线性运动硬化和弹性或弹性的完全塑性行为以夹杂物。在基质中评价累积的塑性应变和循环可塑性。屈服强度对夹杂物周围基质弹性塑性行为的影响以及叠加的宏观残余应力的效果。

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