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Characterization of Surface Modification of 347 Stainless Steel upon Shot Peening

机译:喷丸处理后347不锈钢的表面改性特性

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摘要

Plastic deformations, such as those obtained by shot peening on specimen surface, are an efficient way to improve the mechanical behavior of metals. Generally, scanning electron microscopy (SEM) and electron backscattered diffraction (EBSD) are commonly used to observe the complex microstructural evolutions, such as grain refinement and phase transformation, induced by the surface treatment. In this work, the microstructure of 347 stainless steel, after ultrasonic shot peening (USP) treatments, was investigated. SEM, EBSD, transmission electron microscopy, and X-ray diffraction were used to observe the microstructural evolutions, such as grain refinement and phase transformation. Deformation depth after the USP treatment was about 200 μm. Grain size on the treated surface layer was about 100 nm, with two phases: austenite and α′-martensite. The percentages of the austenite and α′-martensite phases were 54% and 46%, respectively, which constitute an exact expression of the degree of plastic deformation on austenitic stainless steel.
机译:塑性变形(例如通过对试样表面进行喷丸处理而获得的变形)是改善金属机械性能的有效方法。通常,扫描电子显微镜(SEM)和电子背散射衍射(EBSD)通常用于观察表面处理引起的复杂的微观结构演变,例如晶粒细化和相变。在这项工作中,对347不锈钢进行了超声波喷丸(USP)处理后的微观结构进行了研究。 SEM,EBSD,透射电子显微镜和X射线衍射用于观察微观结构的演变,例如晶粒细化和相变。 USP处理后的变形深度约为200μm。处理后的表面层的晶粒尺寸约为100 nm,具有两个相:奥氏体相和α'-马氏体相。奥氏体相和α'-马氏体相的百分数分别为54%和46%,这构成了奥氏体不锈钢塑性变形程度的精确表示。

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