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Residual Stress Analysis in Surface Mechanical Attrition Treated (SMAT) Iron and Steel Component Materials by Magnetic Barkhausen Emission Technique

机译:Barkhausen电磁发射技术在表面机械磨损处理(SMAT)钢铁构件材料中的残余应力分析

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Surface plastic deformation processes like shot peening (SP) have been extensively used by engineering industries to introduce compressive stresses at the surface to achieve superior mechanical properties (especially fatigue and wear resistance). A new family of surface severe plastic deformation processes $({rm S}^{2}{rm PD})$ using high-energy balls, widely known as the Surface Mechanical Attrition Treatment (SMAT), is gaining prominence. The investigation addresses the analysis of residual stresses in SMAT-exposed pure iron and SA 516 Grade 70 pressure vessel steel components by Magnetic Barkhausen emission (MBE) technique which is a potential nondestructive evaluation tool. The stresses corresponding to optimized band filter frequencies in MBE technique exhibit good correlation with the X-ray-diffraction based residual stress measurement data. The stresses correlate at a filter frequency of 100–250 kHz in the case of pure iron and 100–300 kHz in the case of SA 516 Grade 70 pressure vessel steel. Depth profiling by chemical etching showed that the nature of stresses changed from compressive to tensile. Microhardness measurements revealed an exponential decrease of hardness with depth.
机译:工程行业已广泛使用诸如喷丸硬化(SP)等表面塑性变形工艺,以在表面施加压缩应力,以实现优异的机械性能(尤其是疲劳性和耐磨性)。使用高能球的一种新的表面严重塑性变形过程({rms} ^ {2} {rm PD})$系列,被广泛称为表面机械磨损处理(SMAT),正日益受到重视。该研究旨在通过磁性巴克豪森发射(MBE)技术分析SMAT暴露的纯铁和SA 516 70级压力容器钢构件中的残余应力,该技术是一种潜在的无损评估工具。 MBE技术中与优化的带滤波器频率相对应的应力与基于X射线衍射的残余应力测量数据表现出良好的相关性。对于纯铁,应力在100–250 kHz的滤波器频率下相关;对于SA 516等级70压力容器钢,在100–300 kHz的滤波器频率下相关。通过化学蚀刻的深度剖析表明,应力的性质从压缩变为拉伸。显微硬度测量显示硬度随深度呈指数下降。

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