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TiNi系形状记忆合金两体磨粒磨损机制研究
引用本文:徐久军,张会臣.TiNi系形状记忆合金两体磨粒磨损机制研究[J].大连理工大学学报,1998,38(6):724-728.
作者姓名:徐久军  张会臣
作者单位:[1]大连理工大学材料工程系 [2]大连海事大学金属材料工艺研究所
摘    要:研究了硬度较低的NiTi系形状记忆合金的两体磨粒磨损行为,其耐磨性明显高于硬度较高的38CrMoAl(氮化)合金,认为形状记忆合金(SMA)的超弹性,弹性模量非线性,高强度及良好的耐疲劳性等因素的综合作用构成了SMA的“自适应”磨损机制,这种“自适应”机制是NiTi系形状记忆合金具有极好耐磨性的根本原因。

关 键 词:形状记忆合金  磨粒磨损  磨损机制  镍钛合金

Two body abrasive wear mechanism of TiNi SMA
Xu\ Jiujun ,\ Zhang\ Huichen ,\ Wang\ Gang ,\ Yan\ Li ,\ Yang\ Dazhi Dept. of Mater. Eng.,Dalian Univ. of Technol.,China\ \ Inst. of Mater. and Technol.,Dalian Maritime Univ.,China.Two body abrasive wear mechanism of TiNi SMA[J].Journal of Dalian University of Technology,1998,38(6):724-728.
Authors:Xu\ Jiujun    \ Zhang\ Huichen  \ Wang\ Gang  \ Yan\ Li  \ Yang\ Dazhi Dept of Mater Eng  Dalian Univ of Technol  China\ \ Inst of Mater and Technol  Dalian Maritime Univ  China
Institution:Xu\ Jiujun 1,2,\ Zhang\ Huichen 2,\ Wang\ Gang 1,\ Yan\ Li 2,\ Yang\ Dazhi 1 1) Dept. of Mater. Eng.,Dalian Univ. of Technol.,China\ \ 2) Inst. of Mater. and Technol.,Dalian Maritime Univ.,China
Abstract:? The NiTi and Ti 50 Ni 25 Cu 25 alloy were tested for two body abrasive wear against quench hardening 45 # steel and 600 # abrasive paper on pin on disk test configuration respectively. The nitriding 38CrMoAl alloy as the compared alloy was tested on the same condition. The NiTi and Ti 50 Ni 25 Cu 25 alloy demonstrated excellent wear resistance whether against quench hardening 45 # steel or against 600 # abrasive paper in the load range 40 100 N and in the sliding distance range 0 5000 m which was investigated in this study. The wear rates of the Ti 50 Ni 25 Cu 25 were found to be 30% 50% of that of the nitriding 38CrMoAl despite of the greatly lower hardness of the SMA. The plough track of the Ti 50 Ni 25 Cu 25 alloy against 600 # abrasive paper was more clear than that against quench hardening 45 # steel. The metallographic characterization of the cross section along the wear track indicated no obvious plastic deformation in the tribolayer. The wear resistance of SMA is discussed in terms of self adaptable wear mechanism which is the interaction result of super elasticity, non linear elastic module, high yield and fatigue strength.
Keywords:shape memory alloys  abrasive wear  self adaptable  wear mechanism
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