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首页> 外文期刊>Materials Focus >Formation of Nanostructured Surface Layer Induced by Surface Mechanical Attrition Treatment (SMAT) in Spring Steel
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Formation of Nanostructured Surface Layer Induced by Surface Mechanical Attrition Treatment (SMAT) in Spring Steel

机译:弹簧钢表面机械磨损处理(SMAT)诱导形成的纳米结构表面层

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Surface mechanical attrition treatment (SMAT) is measured to be a current approach for obtaining a nanostructured layer on the treated metal. In this paper, a nanostructured surface layer up to 450 ± 20 μm thick was induced on commercially used spring steel by SMAT.The effect of SMAT on microstructural features has been systematically characterized by optical microscope (OM) for cross-sectional observation, transmission electron microscopy (TEM) and X-ray diffractometry (XRD) analysis. The result shows an increase in strain in the surface layer due tograin refinement process. This involves an increase in dislocation density, formation of thin martensitic layers and twinned martensite. The SMAT also induce craters which is approximately circular depression in the surface prompt an increase in roughness value from 0.572 μm to 1.978μm and decreases slightly upto 1.871 μm when SMAT goes upto 75 min. These changes resulted in an increase of mechanical properties which were characterized as hardness increment, yield strength, tensile strength and also increases the % elongation after certain time ofSMAT.
机译:表面机械磨耗处理(SMAT)被测量为在处理后的金属上获得纳米结构层的当前方法。本文通过SMAT在商用弹簧钢上诱导出厚度达450±20μm的纳米结构表面层。通过光学显微镜(OM)进行了系统的表征,表征了SMAT对微观结构特征的影响,用于横截面观察,透射电子显微镜(TEM)和X射线衍射(XRD)分析。结果表明,由于晶粒细化过程,表面层的应变增加。这涉及位错密度的增加,马氏体薄层的形成和孪晶马氏体的形成。 SMAT还会产生凹坑,该凹坑大约在表面呈圆形凹陷,从而促使粗糙度值从0.572μm增加到1.978μm,并在SMAT上升到75分钟时略微下降到1.871μm。这些变化导致机械性能提高,这些性能表征为硬度增加,屈服强度,抗张强度,并且还增加了一定时间的SMAT后的伸长率%。

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