[1]Dalmau A, Richard C, Igual-Muñoz A. Degradation mechanisms in martensitic stainless steels: Wear, corrosion and tribocorrosion appraisal[J]. Tribology International, 2018, 121: 167-179. [2]Lo K H, Shek C H, Lai J K L. Recent developments in stainless steels[J]. Materials Science and Engineering R: Reports, 2009, 65(4-6): 39-104. [3]Angelini V, Boromei I, Martini C, et al. Dry sliding behavior (block-on-ring tests) of AISI 420 martensitic stainless steel, surface hardened by low temperature plasma-assisted carburizing[J]. Tribology International, 2016, 103: 555-565. [4]刘伟东, 张 旭, 屈 华. FeB和Fe2B价电子结构与钢表面渗硼层硬化本质[J]. 材料导报, 2018, 32(4): 672-675. Liu Weidong, Zhang Xu, Qu Hua. Valence electron structures of FeB and Fe2B and the hardening essence of boronizing layer of steel surface[J]. Materials Review A: Review Papers, 2018, 32(4): 672-675. [5]杨凯军, 朱世杰, 阎满刚. 4Cr13不锈钢渗硼工艺及渗层组织和性能的研究[J]. 热加工工艺, 2004(7): 25-26. Yang Kaijun, Zhu Shijie, Yan Mangang. Boride layer and boronizing process parameters of 4Cr13 stainless steel[J]. Hot Working Technology, 2004(7): 25-26. [6]Taktak Sukru. Tribological behaviour of borided bearing steels at elevated temperatures[J]. Surface and Coatings Technology, 2006, 201(6): 2230-2239. [7]马 壮, 李 玲, 王斯琦, 等. 渗硼层后处理研究现状[J]. 金属热处理, 2017, 42(8): 146-151. Ma Zhuang, Li Ling, Wang Siqi, et al. Research status of post-treatment of boronized layer[J]. Heat Treatment of Metals, 2017, 42(8): 146-151. [8]张 拯, 林万明, 钱玉水. 马氏体不锈钢腐蚀性能的研究[J]. 铸造设备与工艺, 2012(6): 11-13. Zhang Zheng, Lin Wanming, Qian Yushui. Research on corrosion properties of martensitic stainless steel[J]. Foundry Equipment and Technology, 2012(6): 11-13. [9]赵 烈. 硼、碳共渗及复合渗的组织与性能研究[D]. 杭州: 浙江大学, 1989. Zhao Lie. Microstructure and properties of boron, carburizing and compound carburizing[D]. Hangzhou: Zhejiang University, 1989. |