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Residual stresses in surface induction hardening of steels: Comparison between experiment and simulation

机译:钢表面感应淬火中的残余应力:实验与模拟的比较

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摘要

Deep induction hardening has been performed on two batches of smooth cylindrical specimens with a hardening depth respectively around 2 mm and 3 mm. The distributions of axial and circumferential residual stresses are analysed for the two specimen batches by X-ray diffraction technique. The radial normal stress field is estimated through the use of the well known Moore and Evans correction. Finally, the experimental residual stresses are compared with those obtained from a multiphysic finite element modelling of the whole induction treatment process, including electromagnetic, thermal, metallurgical and mechanical phenomena. The simulated residual stress field is in good agreement with X-ray analysisespecially at depths lower than one-tenth the specimen diameter. At deeper depths, a correction of the experimental X-ray analysis has been done to obtain realistic values.
机译:已对两批光滑深度分别约为2 mm和3 mm的光滑圆柱试样进行了深感应淬火。通过X射线衍射技术分析了这两个样本批次的轴向和周向残余应力分布。径向法向应力场是通过使用众所周知的Moore和Evans校正来估计的。最后,将实验残余应力与从整个感应处理过程的多物理场有限元模型获得的残余应力进行比较,包括电磁,热,冶金和机械现象。模拟的残余应力场与X射线分析非常吻合,特别是在深度小于样品直径的十分之一时。在更深的深度,已对实验X射线分析进行了校正以获得实际值。

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