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Characterization and Properties of Nanostructured Surface Layer in a Low Carbon Steel Subjected to Surface Mechnaical Attrition
引用本文:XingpingYONG GangLIU 等. Characterization and Properties of Nanostructured Surface Layer in a Low Carbon Steel Subjected to Surface Mechnaical Attrition[J]. 材料科学技术学报, 2003, 19(1): 1-4
作者姓名:XingpingYONG GangLIU 等
作者单位:[1]ShenyangNationalLabroatoryforMaterialsScience,InstituteofMetalResearch,ChineseAcademyofSciences,Shenyang,110016,China [2]ShenyangNationalLabroatoryforMaterialsScience,InstituteofMetalResearch,ChineseAcad
摘    要:A nanostructured surface layer was synthesized on a low carbon steel by using surface mechanical attrition (SMA) technique,The refined microstructure of the surface layer was characterized by means of different techniques, and the hardness variation along the depth was examined,Experimental results show that the microstructure is inhomogeneous along the depth ,In the region from top surface to about 40 μm depth,the grain size increases from about 100 nm to 1000 nm ,The grain refinement can be associated with the activity of dislocations After the SMA treatment, the hardness of the surface layer is enhanced significantly compared with that of the original sample ,which cam primarily be attributed to the grain refinement.

关 键 词:低碳钢 表层纳米结晶 显微结构 硬度 表面机械磨损 晶粒细化

Characterization and Properties of Nanostructured Surface Layer in a Low Carbon Steel Subjected to Surface Mechanical Attrition
Xingping YONG,Gang LIU,Ke LU,Jian LV. Characterization and Properties of Nanostructured Surface Layer in a Low Carbon Steel Subjected to Surface Mechanical Attrition[J]. Journal of Materials Science & Technology, 2003, 19(1): 1-4
Authors:Xingping YONG  Gang LIU  Ke LU  Jian LV
Affiliation:Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China
Abstract:A nanostructured surface layer was synthesized on a low carbon steel by using surface mechanical attrition (SMA) technique. The refined microstructure of the surface layer was characterized by means of different techniques, and the hardness variation along the depth was examined. Experimental results show that the microstructure is inhomogeneous along the depth. In the region from top surface to about 40 mm deep, the grain size increases from about 10 nm to 100 nm. In the adjacent region of about 40-80μm depth, the grain size increases from about 100nm to 1000 nm. The grain refinement can be associated with the activity of dislocations. After the SMA treatment, the hardness of the surface layer is enhanced significantly compared with that of the original sample, which can primarily be attributed to the grain refinement.
Keywords:Low carbon steel  Surface mechanical attrition  Surface nanocrystallization...
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