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首页> 外文期刊>JOM >A Coupled Creep Plasticity Model for Residual Stress Relaxation of a Shot-peened Nickel-based Superalloy
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A Coupled Creep Plasticity Model for Residual Stress Relaxation of a Shot-peened Nickel-based Superalloy

机译:喷丸镍基高温合金残余应力松弛的耦合蠕变塑性模型

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摘要

Shot peening is a commonly used surface treatment process that imparts compressive residual stresses into the surface of metal components. Compressive residual stresses retard initiation and growth of fatigue cracks. During component loading history, shot-peened residual stresses may change due to thermal exposure, creep, and cyclic loading. In these instances, taking full credit for compressive residual stresses would result in a nonconservative life prediction. This article describes a methodical approach for characterizing and modeling residual stress relaxation under elevated temperature loading, near and above the monotonic yield strength of IN 100. The model incorporates the dominant creep deformation mechanism, coupling between the creep and plasticity models, and effects of prior plastic strain to simulate surface treatment deformation.
机译:喷丸处理是一种常用的表面处理工艺,可将压缩残余应力施加到金属部件的表面。压缩残余应力阻碍了疲劳裂纹的产生和增长。在零件加载历史记录中,喷丸强化的残余应力可能会由于受热,蠕变和循环加载而发生变化。在这些情况下,充分考虑压缩残余应力将导致非保守寿命预测。本文介绍了一种表征和建模在高温载荷下接近和高于IN 100单调屈服强度的残余应力松弛的方法,该模型包含了主要的蠕变变形机理,蠕变和塑性模型之间的耦合以及先验的影响。塑性应变模拟表面处理变形。

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