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Novel approaches to determine residual stresses by ultramicroindentation techniques: application to sand blasted austenitic stainless steel

机译:通过超微压痕技术确定残余应力的新方法:在喷砂奥氏体不锈钢中的应用

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摘要

This research addresses the determination of residual stresses in sandblasted austenitic steel by ultramicroindentation techniques using a sharp indenter, whose sensitivity to residual stress effects is said to be inferior to that for spherical ones. We propose the introduction of an angular correction in the model of Wang et al. that relates variations in the maximum load to the presence of residual stresses. Likewise, the contribution to hardness of grain size refinement and work hardening, developed as a consequence of the severe plastic deformation during blasting, is determined to avoid overestimation of the residual stresses. Measurements were performed on polished cross sections along a length of several microns, thus obtaining a profile of the residual stresses. Results show a good agreement with those obtained by synchrotron radiation on the same specimens, which validates the method and demonstrates that microindentation using sharp indenters may be sensitive to the residual stress effect.
机译:这项研究致力于通过使用尖锐压头的超微压痕技术确定喷砂奥氏体钢中的残余应力,据说该传感器对残余应力影响的敏感性低于球形的。我们建议在Wang等人的模型中引入角度校正。最大负载的变化与残余应力的存在有关。同样,为了避免高估残余应力,要确定由于喷砂过程中严重的塑性变形而导致的晶粒细化和加工硬化对硬度的贡献。在沿几微米长的抛光截面上进行测量,从而获得残余应力的分布图。结果显示与通过同步加速器辐射在相同样品上获得的结果吻合良好,这验证了该方法并证明使用锋利压头的微压痕可能对残余应力效应敏感。

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