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Surface Engineering of Stainless Steels: Role of Surface Mechanical Attrition Treatment (SMAT)

机译:不锈钢表面工程:表面机械磨损处理的作用(SMAT)

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Surface mechanical attrition treatment (SMAT) technique became popular to develop a nanostructured surface layer on metallic materials for upgrading their overall properties and performance. In this paper, we have presented the SMATing behavior of low stacking fault energy material like AISI 304 using optical microscopy, SEM, microhardness measurement and XRD analysis. SMATing was performed for 15, 30, 45, 60, 75, 90 min by using hardened bearing-steel balls (size: 5.7 mm diameter, hardness: 500HV_(0.1)) at 50 Hz vibrating frequency. XRD analysis indicated the lowest grain-size of about 8.6 nm in the surface region of specimen SMATed for 60 min. In comparison with the non-SMATed specimen, 17 times increase in the dislocation density and 4 times increase in the micro-strain were observed in this SMATed specimen. Improvement in the surface-hardness due to the SMAT was almost two times - hardness before SMAT was 190 HV_(0.1) and after SMAT it was 400 HV_(0.1). There is a gradual decrease in the hardness value across the cross-section of the specimen, and core-hardness value was reached after 300 urn depth below the surface. XRD results indicated the possibility of martensitic phase-transformation at the surface during SMATing of AISI 304 steel. SMATed AISI 304 specimens showed good thermal stability at 550°C for 6 h which was confirmed by microhardness measurement.
机译:表面机械磨损处理(SMAT)技术在金属材料上开发纳米结构表面层,以提高其整体性能和性能。在本文中,我们使用光学显微镜,SEM,微硬度测量和XRD分析介绍了AISI 304等低堆叠故障能量材料的SMATING行为。通过使用硬化的轴承钢球(直径为5.7mm,硬度:500HV_(0.1)),在50Hz振动频率下进行SMALED进行16,30,45,60,75,90 min。 XRD分析表明样品表面区域的最低晶粒尺寸约为8.6nm,在样本区域中滑动60分钟。与非旋转标本相比,在该样本中观察到脱位密度增加17倍,并且在该样本中观察到微菌株增加4倍。由于Smat引起的表面硬度的改善几乎是2次 - 在Smat为190 hV_(0.1)之前硬度,并且在SMAT之后它为400 HV_(0.1)。样品横截面的硬度值逐渐减小,在表面下方300瓮深度后达到核心硬度值。 XRD结果表明,AISI 304钢的SMATING期间,在表面上的马氏体相变的可能性。 Smated AISI 304样本在550℃下显示出良好的热稳定性,6小时通过微硬度测量证实。

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