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首页> 外文期刊>Journal of Materials Engineering and Performance >Microstructural and Passivation Response of Severely Deformed AISI 304 Steel Surface: The Role of Surface Mechanical Attrition Treatment
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Microstructural and Passivation Response of Severely Deformed AISI 304 Steel Surface: The Role of Surface Mechanical Attrition Treatment

机译:严重变形AISI 304钢结构的微观结构和钝化响应:表面机械磨损处理的作用

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The present study investigates the microstructural and passivation behavior of surface mechanical attrition treated (SMAT) AISI 304 stainless steel in a 0.6 M NaCl solution at room temperature. SMAT process, which is more advanced than the classical shot-peening, causes 2-3 times improvement in surface hardness of the steel. Ball size, a vital SMAT parameter, plays a significant role in controlling the microstructure and corrosion behavior of the steel. Larger diameter (6 mm) balls induce thicker deformed layer (450 mu m), a higher proportion of deformation-induced martensite (similar to 50%), a higher density of dislocations and twins, and higher lattice strain. TEM results confirm the presence of {111} twins throughout the deformed layer. SMAT enhances the corrosion properties of the steel. Specimen SMATed with 4-mm-diameter-balls displays the lowest corrosion rate (1.80 x 10(-4)mmpy). SMAT increases the pitting resistance of the steel surface. XPS is utilized to understand the passivation mechanism of steel comprehensively. SMAT alters the proportion of Cr2O3, Cr(OH)(3), Fe2O3, and FeO compounds in the passive layer. SMAT increases the thickness of the passive layer.
机译:本文研究了表面机械磨损处理(SMAT)的AISI 304不锈钢在室温0.6 M NaCl溶液中的微观结构和钝化行为。SMAT工艺比传统喷丸工艺更先进,可使钢的表面硬度提高2-3倍。钢球尺寸是SMAT的一个重要参数,在控制钢的微观结构和腐蚀行为方面起着重要作用。直径较大(6 mm)的球会产生更厚的变形层(450μm),变形诱发马氏体的比例更高(类似于50%),位错和孪晶的密度更高,晶格应变更高。TEM结果证实变形层中存在{111}孪晶。SMAT增强了钢的腐蚀性能。用直径为4毫米的钢球制成的试样显示出最低的腐蚀速率(1.80 x 10(-4)mmpy)。SMAT增加了钢表面的抗点蚀性。利用XPS对钢的钝化机理进行了全面的研究。SMAT改变钝化层中Cr2O3、Cr(OH)(3)、Fe2O3和FeO化合物的比例。SMAT增加了被动层的厚度。

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