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Correlation Modeling Between Peening-Induced Hardness, Residual Stress and Roughness in Case-Hardened High Strength Steels

机译:壳种硬度,残余应力和粗糙度之间的相关建模,壳化高强度钢

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The present paper is focused on the investigation of the correlation modeling of hardness and compressive residual stress on the surface and subsurface regions of case-hardened 18CrNiMo7-6 steels subjected to shot peening. The results exhibit that the relationship between hardness and compressive residual stress can reasonably well be approximated by an inverse linear model. The analysis suggests that the slope and y-intercept of the inverse linear trend line can be related to the compressive residual stress level and the initial material hardness respectively. It is further revealed that the negative effect brought by the peening-induced roughness on the measurement of experimental data computed on the surface can be compensated by performing the normalization using the roughness parameter called the maximum valley height (Sv).
机译:本文的重点是对硬度和压缩残余应力的相关建模的研究,表面和地下区域进行射击喷丸的表面和地下区域。 结果表明硬度和压缩残余应力之间的关系可以通过逆线性模型来近似地近似。 该分析表明,逆线性趋势线的斜率和Y截距分别与压缩残余应力水平和初始材料硬度有关。 进一步揭示了通过使用称为最大谷高度(SV)的粗糙度参数进行归一化来补偿在表面上计算的实验数据测量所带来的消除粗的粗糙度所带来的负效应。

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