期刊文献+

摩擦耦合变形条件下奥氏体不锈钢的摩擦学性能研究 被引量:8

Tribological Properties of Austenitic Stainless Steel under the Condition of Friction Coupling Deformation
原文传递
导出
摘要 利用自制的摩擦耦合变形试验装置,对SUS304亚稳奥氏体不锈钢带在摩擦耦合变形条件下与淬火回火DC53冷作模具钢的往复摩擦性能进行了研究,分析了带试样的塑性变形规律及相变特征,并对其磨损形貌进行了SEM观察.结果表明,摩擦系数随载荷的增加呈现先增后减的特点;摩擦系数随滑动速率的增加而减小,且所有试验条件下的摩擦系数均随试验进程表现出先减小后趋于稳定的规律.不锈钢试样在试验过程中的变形量与时间之间存在对数函数关系,且其摩擦中心区域的塑性变形大于端部变形量,其磨损机理以黏着磨损和磨粒磨损为主.该研究对亚稳奥氏体不锈钢在实际加工成形过程中的工艺优化具有一定的指导意义. A self - made friction tester was used to investigate the tribological properties of SUS304 metastable stainless steel against DC53 under the condition of friction coupling deformation. Plastic deformation, microstructure and wear morphology were analyzed to understand the tribological properties of austenitic stainless steel. Results showed that friction coefficient firstly increased and then decreased with increasing of normal load. However, it reduced as sliding speed increased. Plastic deformation of stainless steel with testing duration followed a logarithmic function. The main wear mechanisms of austenitic stainless steel were adhesive wear and abrasive wear.
出处 《摩擦学学报》 EI CAS CSCD 北大核心 2009年第5期405-411,共7页 Tribology
基金 国家自然科学基金资助项目(50675128)
关键词 摩擦耦合变形 奥氏体不锈钢 摩擦系数 friction coupling deformation, austenitic stainless steel, friction coefficient
  • 相关文献

参考文献10

  • 1Riviere J P, Brin C, Villain J P. Structure and topography modifications of austenitic steel surfaces after friction in sliding contact[ J]. Appl Phys A, 2003, 76:277-283.
  • 2Meng Hua, Xicheng Wei, Jian Li. Friction and wear behavior of SUS 304 austenitic stainless steel against Al2O3 ceramic ball under relative high load[ J]. Wear, 2008, 265:799 - 810.
  • 3Vallance I) W, Matlock D K. Application of the bending - under- tension friction test to coated sheet steels[J]. Journal of Materials Engineering and Performance. 1992, 1:685 -694.
  • 4Alinger M J, Van Tyne C J. Evolution of die surfaces during repeated stretch - bend sheet stee! deformation [ J ]. Journal of Materials Processing Technology, 2003, 141:41 ! -419.
  • 5Wenzloff G J, HyltonT A, Matlock D K. Technical note: a new test procedure for the bending under tension friction test [ J ]. Journal of Material Engineering and Performance, 1992, 1: 609 - 614.
  • 6张旺峰,陈瑜眉,朱金华.亚稳态奥氏体钢的形变硬化[J].钢铁,2000,35(9):52-55. 被引量:7
  • 7高彩桥,伊晓.钢中马氏体摩擦学特性的研究[J].机械工程材料,1989,13(1):18-19. 被引量:1
  • 8郑立允,赵立新,张京军,熊惟皓.TiN/TiAlN涂层金属陶瓷的摩擦学性能研究[J].稀有金属材料与工程,2007,36(A03):492-495. 被引量:6
  • 9王文龙,吴军华,张国定.铝基复合材料的摩擦磨损性能[J].金属学报,1998,34(11):1178-1182. 被引量:21
  • 10李晓春,韦习成,HUAMeng,李健.SUS304奥氏体不锈钢的摩擦变形层研究[J].摩擦学学报,2007,27(4):341-345. 被引量:16

二级参考文献26

  • 1TANG Changguo, ZHU Jinhua, ZHANG Yuhua, ZHOU HuijiuResearch Institute for Strength of Metals. Xi’an Jiaotong University. Xi’an. China.EFFECT OF STRAIN RATE(?) ON STRAIN HARDENING EXPONENT n OF SOME METALLIC MATERIALS[J].Acta Metallurgica Sinica(English Letters),1994,7(3):183-186. 被引量:4
  • 2胡志忠,曹淑珍.形变硬化指数与强度的关系[J].西安交通大学学报,1993,27(6):71-76. 被引量:28
  • 3林成新,王桂新,吴彦东,王金刚.Fe-Mn-Si形状记忆合金耐磨性的研究[J].摩擦学学报,2006,26(4):336-340. 被引量:7
  • 4杨于兴.X射线衍射分析[M].上海:上海交通大学出版社,1983..
  • 5Riviere J P,Brin C,Vilain J P.Structure and topography modifications of austenitic steel surfaces after friction in sliding contact[J].Appl Phys A,2003,76:277-283.
  • 6Hsu K L,Ahn T M,Rigney D A.Friction,wear and microstructure of unlubricated austenitic stainless steels[J].Wear,1980,60 (1):13-37.
  • 7Hübner W,Pyzalla A,Assmus K,et al.Phase stability of AISI 304 stainless steel during sliding wear at extremely low temperature[J].Wear,2003,255:476-480.
  • 8Hübner W.Phase transformation in austenitic stainless steels during low temperature tribological stressing[J].Tribology International,2001,34:231-236.
  • 9Büscher R,Gleising B,Dudzinski W,et al.The effects of subsurface deformation on the sliding wear behavior of a microtextured high-nitrogen steel surface[J].Wear,2004,257:284-291.
  • 10李晓春 韦习成 李健 等.SUS 304奥氏体不锈钢摩擦硬化行为的研究.哈尔滨工业大学学报,2006,38:147-150.

共引文献46

同被引文献109

引证文献8

二级引证文献43

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部