[1]Qiao Y X, Zheng Y G, Ke W, et al. Electrochemical behaviour of high nitrogen stainless steel in acidic solutions[J]. Corrosion Science, 2009, 51(5): 979-986. [2]Vishai Vats, Baskaran T, Shashi Bhushan Arya. Tribo-corrosion study of nickel-free, high nitrogen and high manganese austenitic stainless steel[J]. Tribology International, 2018, 119: 659-666. [3]Sun Guixun, Zhang Yu, Sun Shicheng, et al. Plastic flow behavior and its relationship to tensile mechanical properties of high nitrogen nickel-free austenitic stainless steel[J]. Materials Science and Engineering A, 2016, 662: 432-442. [4]Lang Yuping, Qu Huapeng, Chen Haitao, et al. Research progress and development tendency of nitrogen-alloyed austenitic stainless steels[J]. Journal of Iron and Steel Research, International, 2015, 22: 91-98. [5]Lo K H, Shek C H, Lai J K L. Recent developments in stainless steels[J]. Materials Science and Engineering R, 2009, 65(4/6): 39-104. [6]EN 1811: 2011, Reference test method for release of nickel from all post assemblies which are inserted into pierced parts of the human body and articlesintended to come into directand prolonged contact with the skin[S]. [7]Tae Ho Lee, Chang Seok Oh, Chang Gil Lee, et al. Precipitation of σ-phase in high-nitrogen austenitic 18Cr-18Mn-2Mo-0.9N stainless steel during isothermal aging[J]. Scripta Materialia, 2004, 50: 1325-1328. [8]Wan Peng, Ren Yibin, Zhang Bingchun, et al. Effect of nitrogen on blood compatibility of nickel-free high nitrogen stainless steel for biomaterial[J]. Materials Science and Engineering C, 2010, 30: 1183-1189. [9]Wang Qingchuan, Zhang Bingchun, Ren Yibin, et al. Eliminating detrimental effect of cold working on pitting corrosion resistance in high nitrogen austenitic stainless steels[J]. Corrosion Science, 2017, 123: 351-355. [10]Wang D, Ni D R, Xiao B L, et al. Microstructural evolution and mechanical properties of friction stir welded joint of Fe-Cr-Mn-Mo-N austenite stainless steel[J]. Materials and Design, 2014, 64: 355-359. |