[1]王 军, 刘 莹. 316L不锈钢钝化膜的耐腐蚀性和血液相容性[J]. 上海交通大学学报, 2018, 52(5): 593-598. Wang Jun, Liu Ying. Corrosion resistance and hemocompatibilility of passivated 316L stainless steel[J]. Journal of Shanghai Jiao Tong University, 2018, 52(5): 593-598. [2]李积武, 张 辉. 模拟体液中氧含量对316L不锈钢微动疲劳的影响[J]. 腐蚀与防护, 2020, 41(6): 48-52. Li Jiwu, Zhang Hui. Effect of oxygen concentration in simulated body fluid on fretting fatigue of 316L stainless steel[J]. Corrosion and Protection, 2020, 41(6): 48-52. [3]王青川, 张炳春, 任伊宾, 等. 医用无镍不锈钢的研究与应用[J]. 金属学报, 2017, 53(10): 1311-1316. Wang Qingchuan, Zhang Bingchun, Ren Yibin, et al. Research and application of biomedical nickel-free stainless steels[J]. Acta Metallurgica Sinica, 2017, 53(10): 1311-1316. [4]王青川, 张炳春, 任伊宾, 等. 医用无镍不锈钢作为骨植入材料的研究与应用[J]. 中国医疗设备, 2018, 33(5): 18-20. Wang Qingchuan, Zhang Bingchun, Ren Yibin, et al. Research and application of biomedical nickel-free stainless steels as bone-implant materials[J]. China Medical Devices, 2018, 33(5): 18-20. [5]曹 岩, 高 洁, 郑 可, 等. 316L不锈钢表面Ta涂层的制备及性能[J]. 中国表面工程, 2019, 32(6): 29-36. Cao Yan, Gao Jie, Zheng Ke, et al. Fabrication and properties of Ta coating on 316L stainless steel[J]. China Surface Engineering, 2019, 32(6): 29-36. [6]黄 文, 郑李娟, 王成勇, 等. 不同涂层刀具车削医用316L不锈钢性能研究[J]. 工具技术, 2018, 52(9): 28-34. Huang Wen, Zheng Lijuan, Wang Chengyong, et al. Study on 316L stainless steel machining properties with different coating tools[J]. Tool Engineering, 2018, 52(9): 28-34. [7]刘宇航, 李 岩, 李 林, 等. 316L不锈钢表面微织构激光加工工艺参数[J]. 烟台大学学报(自然科学与工程版), 2021, 34(3): 266-271. Liu Yuhang, Li Yan, Li Lin, et al. Technological parameters of laser machining of 316L stainless steel surface micro-texture[J]. Journal of Yantai University(Natural Science and Engineering Edition) , 2021, 34(3): 266-271. [8]李 俊. 冷变形高氮奥氏体不锈钢的耐蚀性能及力学性能研究[D]. 合肥: 中国科学技术大学, 2020. Li Jun. Study on corrosion resistence and mechanical properties of cold-worked high nitrogen austenitic stainless steel[D]. Hefei: University of Science and Technology of China, 2020. [9]马铮杰, 任 灿, 严 彪, 等. 316L不锈钢与CaSiO3复合材料选择性激光熔化制备工艺[J]. 有色金属材料与工程, 2018, 39(1): 31-37. Ma Zhengjie, Ren Can, Yan Biao, et al. Preparation and creation of the composite of 316l stainless steel and CaSiO3 for bone repairing implantation[J]. Nonferrous Metal Materials and Engineering, 2018, 39(1): 31-37. [10]王金亮, 王晨充, 黄明浩, 等. 低应变预变形对变温马氏体相变行为的影响规律及作用机制[J]. 金属学报, 2021, 57(5): 575-585. Wang Jinliang, Wang Chenchong, Huang Minghao, et al. The effects and mechanisms of pre-deformation with low strain on temperature-induced martensitic transformation[J]. Acta Metallurgica Sinica, 2021, 57(5): 575-585. [11]张 梅, 孙国胜, 秦岽烊, 等. 冷轧304不锈钢的马氏体逆相变及奥氏体再结晶行为[J]. 金属热处理, 2021, 46(7): 51-55. Zhang Mei, Sun Guosheng, Qin Dongyang, et al. Behavior of martensite reverse transformation and austenite recrystallization of cold-rolled 304 stainless steel[J]. Heat Treatment of Metals, 2021, 46(7): 51-55. [12]邱旭扬帆, 杨卓越, 丁雅莉. 残留/逆转变奥氏体对改善高强度不锈钢-196 ℃超低温冲击性能的影响[J]. 金属热处理, 2021, 46(5): 71-74. Qiu Xuyangfan, Yang Zhuoyue, Ding Yali. Effect of retained/reversed austenite on improving -196 ℃ cryogenic impact property of high strength stainless steel[J]. Heat Treatment of Metals, 2021, 46(5): 71-74. |