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Effect of Cold Deformation on Friction Wear Property of 00Cr18Mn15Mo2N0.9 High-nitrogen Nickel-free Stainless Steel |
ZHAO Haochuan1,2, REN Yibin2,**( ), LIU Wenpeng2, FAN Xinmin1, YANG Ke2 |
1. Department of Materials Science and Engineering, Nanjing University of Science and Technology, Nanjing 210094, China 2. Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China |
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Cite this article:
ZHAO Haochuan, REN Yibin, LIU Wenpeng, FAN Xinmin, YANG Ke. Effect of Cold Deformation on Friction Wear Property of 00Cr18Mn15Mo2N0.9 High-nitrogen Nickel-free Stainless Steel. Chinese Journal of Materials Research, 2016, 30(3): 171-178.
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Abstract The cold rolling with different reduction degrees for a new type high-nitrogen nickel-free stainless steel was conducted, then the cold deformation performance and its effect on the friction wear property for the steel were studied. The results showed that the microstructure of the steel was stable and there was no strain-induced martensite even by the maximum deformation of 60%. As the cold deformation increased, the strength and hardness of the steel increased rapidly while the elongation and work-hardening exponent decreased gradually. There existed a trend that the wear rate of the steel decreased firstly and then increased with the increasing cold deformation, whilst, the best wear resistance can be achieved by 20% cold deformation for the loads of 2 N and 5 N, and by 40% cold deformation for 10 N, respectively. Moreover, the main wear mechanism of the high-nitrogen nickel-free stainless steel changed from abrasive wear, oxidation wear and brittle flaking to abrasive wear and brittle flaking with the increasing cold deformation and load.
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Received: 27 July 2015
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Fund: *Supported by National Natural Science Foundation of China No.11302007 |
About author: To whom correspondence should be addressed, Tel: (024)23971676,bren@imr.ac.cn |
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