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Low-Temperature Nitriding by Means of SMAT
作者姓名:W.P.Tong  H.W.Zhang  N.R.Tao  Z.B.Wang  J.Lu  K.Lu
作者单位:[1]ShenyangNationalLaboratoryforMaterialsScience,InstituteofMetalResearch,ChineseAcademyofSciences,Shenyang110016,China [3]LASMIS,UniversityofTechnologyofTroyes,10000,Troyes,France.
基金项目:国家自然科学基金,科技部资助项目
摘    要:The microstructure in the surface layer of iron and steel samples can be refined at the nanometer scale by means of a surface mechanical attrition treatment (SMAT) that generates repetitive severe plastic deformation to the surface layer.The subsequent nitriding kinetics of the as-treated samples with the nanostructured surface layer is greatly enhanced so that the nitriding temperatures can be reduce to 300 ~ 400℃ regions. This enhanced processing method demonstrates both the technological significance of nanomaterials in advancing the traditional processing techniques, and provides a new approach for selective surface reactions in solids. This article reviews the present state of the art in this field. The microstructure and properties of SMAT samples nitrided will be summarized. Further considerations of the development and applications of this new technique will also be presented.

关 键 词:低温渗氮  SMAT  纳米结晶  表面机械损耗

Low-Temperature Nitriding by Means of SMAT
W.P.Tong H.W.Zhang N.R.Tao Z.B.Wang J.Lu K.Lu.Low-Temperature Nitriding by Means of SMAT[J].Transactions of Materials and Heat Treatment,2004,25(5):301-306.
Authors:WPTong  HWZhang  NRTao  ZBWang  JLu  KLu
Affiliation:1. Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China.;The Key Laboratory of National Education Ministryfor Electromagnetic Processing of Materials,Northeastern University, Shenyang 110004, China
2. Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China
3. LASMIS, University of Technology of Troyes, 10000, Troyes, France
Abstract:The microstructure in the surface layer of iron and steel samples can be refined at the nanometer scale by means of a surface mechanical attrition treatment (SMAT) that generates repetitive severe plastic deformation to the surface layer.The subsequent nitriding kinetics of the as-treated samples with the nanostructured surface layer is greatly enhanced so that the nitriding temperatures can be reduce to 300 ~ 400 ℃ regions. This enhanced processing method demonstrates both the technological significance of nanomaterials in advancing the traditional processing techniques, and provides a new approach for selective surface reactions in solids. This article reviews the present state of the art in this field. The microstructure and properties of SMAT samples nitrided will be summarized. Further considerations of the development and applications of this new technique will also be presented.
Keywords:Nanocrystalline materials  Nitriding  Surface mechanical attrition treatment  
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