参考文献/References:
[1].James C W, Rodney R B. Opportunities and issues in the application of titanium alloys for aerospace components[J]. Metals, 2020, 10(6): 705-716.
[2].杨佳惠, 张一凡, 武俊霞, 等. 生物医用钛合金研究进展[J]. 稀有金属与硬质合金, 2021, 49(5): 29-34.
[3].Pesode P, Barve S. A review-metastable β titanium alloy for biomedical applications[J]. Journal of Engineering and Applied Science, 2023, 70(1): 382-394.
[4].Guo Z, Huang Y, Sun C, et al. Preparation and characteri-zation of metastable β-Type titanium alloys with favorable properties for orthopedic applications[J]. Journal of Alloys and Compounds, 2023, 949(16): 9829-9839.
[5].Xu J, Zhang J, Shi Y, et al. Surface modification of biomedical Ti and Ti alloys: A Review on current advances[J]. Materials, 2022, 15(5): 1749-1758.
[6].白雪寒, 范林, 赵铭钰, 等. 医用钛及钛合金表面涂层研究进展[J]. 钛工业进展, 2022, 39(3): 33-40.
[7].Dan??man ?, Odabas D, Teber M. The effect of coatings on the wear behavior of Ti6Al4V alloy used in biomedical applications[J]. Materials Science & Engineering, 2018, 295(1): 12-44.
[8].Li Y, Wang W, Yu F, et al. Characterization and cytocom-patibility of hierarchical porous TiO 2 coatings incorporated with calcium and strontium by one-step micro-arc oxide-tion[J]. Materials Science & Engineering, C. Materials for Biogical Applications, 2020, 109(10): 342-356.
[9].Tang Y, Wu C, Tian P, et al. Fabrication and induced mineralization of bio-piezoelectric ceramic coating on titanium alloys[J]. Ceramics International, 2020, 46(3): 4006-4014.
[10].邢珂, 李博文. TiCN涂层的制备及其微观结构和性能[J]. 电镀与涂饰, 2021, 40(1): 35-40.
[11].闫鹏庆, 卢文壮, 刘森, 等. TC4钛合金直流液相等离子体法强化层的生长[J]. 中国表面工程, 2015, 28(6): 55-61.
[12].黄敏. Ti6Al4V表面直流液相等离子电解碳氮化钛渗层制备及其性能[D]. 南京: 南京理工大学, 2018.
[13].Basnet R, 张吴晖, 闫鹏庆, 等. TC21钛合金液相等离子体法制备碳氮渗层[J]. 机械制造与自动化, 2017, 46(6): 41-44.
[14].Huang J, Fan X, Xiong D, et al. Characterization and one-step synthesis of hydroxyapatite-Ti(C,N)-TiO2 composite coating by cathodic plasma electrolytic saturation and accompanying electrochemical deposition on titanium alloy[J]. Surface & Coatings Technology, 2017, 324(15): 463-470.
[15].Chitsaz-Khoyi L, Khalil-Allafi J, Etminanfar M. Corrosion behaviour of TiC/N coating prepared by plasma electrolytic saturation on NiTi[J]. Surface Engineering, 2021, 37(2): 197-205.
[16].胡宗纯, 谢发勤, 吴向清, 等. 钛合金表面等离子体电解氮碳共渗层的特征与耐蚀性[J]. 中国表面工程, 2009, 22(2): 56-60.
[17].柳永康, 谢发勤, 胡宗纯, 等. 时间和电压对TC4合金表面等离子碳氮共渗层的影响[J]. 中国表面工程, 2007, 86(5): 37-40.
[18].Aliofkhazraee M, Sabour Rouhaghdam A. Pulsed nanocrys-talline plasma electrolytic carburising for corrosion protect-tion of a γ- TiAl alloy: Part 2. constant frequency and duty cycle[J]. Journal of Alloys and Compounds, 2008, 462(1): 421-427.
[19].夏璐, 黄洁雯, 樊新民, 等. 阴极液相等离子电解制备Ti6-Al-4V钛合金表面膜[J]. 金属热处理, 2018. 43(2): 150-156.
[20].胡宗纯, 谢发勤, 柳永康, 等. 钛合金表面等离子体电解氮碳共渗的研究[J]. 材料导报, 2008, 22(4): 132-134.
[21].黄敏. Ti6Al4V表面直流液相等离子体电解碳氮化钛渗层制备及其性能[D]. 南京: 南京理工大学, 2018.
相似文献/References:
[1]孙慧艳*,王兴雅,孙鹏飞.钛合金蓝色腐蚀检查工艺技术研究[J].电镀与精饰,2020,(1):36.[doi:10.3969/j.issn.1001-3849.2020.01.008]
SUN Huiyan*,WANG Xingya,SUN Pengfei.Research on the Blue Corrosion Inspection Technology of Titanium Alloy[J].Plating & Finishing,2020,(10):36.[doi:10.3969/j.issn.1001-3849.2020.01.008]
[2]李 江,李 博*,刘小强,等.钛合金多孔零件内外表面一次镀铬工艺研究[J].电镀与精饰,2020,(7):38.[doi:10.3969/j.issn.1001-3849.2020.07.0080]
LI Jiang,LI Bo*,LIU Xiaoqiang,et al.Study on Chromium Plating Process of Porous Parts of Titanium Alloy[J].Plating & Finishing,2020,(10):38.[doi:10.3969/j.issn.1001-3849.2020.07.0080]
[3]杨 堃*,张 明,孙小岚.TC2、TC6表面喷涂WC-17Co与电镀铬耐磨性能对比[J].电镀与精饰,2021,(10):26.[doi:10.3969/j.issn.1001-3849.2021.10.005]
YANG Kun*,ZHANG Ming,SUN Xiaolan.Wear Resistant Comparison of Spraying WC-17Co Coating and Chromium Plating on the Surface of TC2 and TC6[J].Plating & Finishing,2021,(10):26.[doi:10.3969/j.issn.1001-3849.2021.10.005]
[4]詹中伟,葛玉麟,田礼熙*,等.搅拌速度和颗粒尺寸对复合电沉积Ni-cBN复合量的影响及机理分析[J].电镀与精饰,2022,(1):1.[doi:10.3969/j.issn.1001-3849.2022.01.001]
ZHAN Zhongwei,GE Yulin TIAN Lixi*,WANG Shuaixing,et al.Effect of Stirring Speed and Particle Size on the Particle Content in the Ni-cBN Composite Plating and Its Mechanism[J].Plating & Finishing,2022,(10):1.[doi:10.3969/j.issn.1001-3849.2022.01.001]
[5]赵明欣,赵 旭*,郎小尘.钛合金表面超疏水膜的制备及其耐蚀性与机械稳定性[J].电镀与精饰,2024,(2):44.[doi:10.3969/j.issn.1001-3849.2024.02.007]
Zhao Mingxin,Zhao Xu *,Lang Xiaochen.Preparation and corrosion resistance and mechanical stability of superhydrophobic film on titanium alloy[J].Plating & Finishing,2024,(10):44.[doi:10.3969/j.issn.1001-3849.2024.02.007]
[6]李建普,卢旭东*,李冬冬.舰用钛合金及铬涂层抗氧化和腐蚀性能研究[J].电镀与精饰,2024,(5):65.[doi:10.3969/j.issn.1001-3849.2024.05.010]
Li Jianpu,Lu Xudong*,Li Dongdong.Research on oxidation resistance and corrosion resistance of marine titanium alloy and chromium coating[J].Plating & Finishing,2024,(10):65.[doi:10.3969/j.issn.1001-3849.2024.05.010]
[7]收稿日期: 0-0-8 修回日期: 0-0-.钛合金脉冲电沉积 Cu-WC 复合镀层的硬度与摩擦磨损性能[J].电镀与精饰,2024,(11):58.
Hardness and friction and wear property of Cu-WC composite coating on titanium alloy prepared by pulse electrodeposition Feng Xujia 1 Sun Hao 1* Gao Chenjing 2 Zhu Qingqin 1[J].Plating & Finishing,2024,(10):58.
[8]陈俊豪,刘 刚,王帅星,等.doi: 10.3969/j.issn.1001-3849.2025.04.016添加剂对TA12钛合金化学铣切性能的影响[J].电镀与精饰,2025,(04):101.
Chen Junhao,Liu Gang*,Wang Shuaixing,et al.Influence of additive on the chemical milling performance of TA12 titanium alloy[J].Plating & Finishing,2025,(10):101.
[9]李维荣,周宏标,王平右,等.doi: 10.3969/j.issn.1001-3849.2025.05.016钛合金化学铣切加工中酸雾抑雾剂对化铣性能的影响[J].电镀与精饰,2025,(05):107.
Cheng Fasong,Liu Gang,Wang Shuaixing*,et al.Influence of acid mist suppressants on the chemical milling performance of titanium alloy Li Weirong1, Zhou Hongbiao1, Wang Pingyou1, Yuan Ping1, Wang Tao1,[J].Plating & Finishing,2025,(10):107.