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[1]张帮彦*,董家键,郑世杰,等.复合电沉积陶瓷颗粒增强金属基复合涂层研究进展[J].电镀与精饰,2023,(1):46-55.[doi:10.3969/j.issn.1001-3849.2023.01.008]
 Zhang Bangyan*,Dong Jiajian,Zheng Shijie,et al.Research progress on the ceramic particle reinforced metal matrix composite coatings prepared by composite electrodeposition[J].Plating & Finishing,2023,(1):46-55.[doi:10.3969/j.issn.1001-3849.2023.01.008]
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复合电沉积陶瓷颗粒增强金属基复合涂层研究进展

参考文献/References:



[1] Mortensen A, Llorca J. Metal matrix composites[J]. Annual Review of Materials Research, 2010, 40(1): 243-270.

[2] 刘琳 , 康敏 , 杨寅初 , 等 . 喷射参数对 Ni-P-BN(h)-Al 2 O 3 纳米复合镀层显微硬度及耐磨性的影响 [J]. 材料保护 , 2020, 53(2): 93-98, 111.

[3] 王闯 , 张快 , 严红燕 , 等 . 金属基及陶瓷基金属陶瓷的强化机理 [J]. 中国陶瓷 , 2020, 56(1): 1-4.

[4] 张洋 , 朱浩 , 曹雅彬 . 纳米陶瓷颗粒增强金属基复合材料的制备技术 [J]. 微纳电子技术 , 2014, 51(2): 126-30, 35.

[5] 王晓丽 , 顾海 , 赵紫怡 , 等 . 电沉积金属基复合镀层制备研究进展 [J]. 电镀与精饰 , 2021, 43(8): 44-47.

[6] 李长春 , 姜新华 , 肖祥定 , 等 . Ni-P-WC 和 Ni-P-SiC 复合镀层的耐磨和耐蚀性能比较 [J]. 材料保护 , 2021, 54(9): 59-62.

[7] Torkamani D A, Velashjerdi M, Abbas A, et al. Electrodeposition of nickel matrix composite coatings via various boride particles: A review[J]. Journal of Composites and Compounds, 2021, 3(7): 91-98.

[8] 刘光明 . 表面处理技术概论第 2 版 [M]. 北京 : 化学工业出版社 , 2018.

[9] 王晓丽 , 周昭昌 , 黄大志 . 复合电沉积技术制备金属基—微粒薄膜的研究进展 [J]. 热加工工艺 , 2018, 47(22): 16-20, 6.

[10] 郭鹤桐 , 张三元 . 复合电镀技术 [M]. 北京 : 化学工业出版社 , 2007.

[11] 安娜 , 花珂 , 史洪源 , 等 . TC4 钛合金表面电沉积 Co-W/MoS 2 复合镀层及摩擦磨损性能研究 [J]. 电镀与精饰 , 2022, 44(9): 63-70.

[12] 范云鹰 , 张英杰 , 董鹏 , 等 . 复合电沉积的影响因素 [J]. 电镀与涂饰 , 2007(10): 4-7.

[13] Walsh F C, Ponce D L C. A review of the electrodeposition of metal matrix composite coatings by inclusion of particles in a metal layer: an established and diversifying technology[J]. Transactions of the IMF, 2014, 92(2): 83-98.

[14] Rasooli A, Safavi M S, Kasbkar H M. Cr 2 O 3 nanoparticles: A promising candidate to improve the mechanical properties and corrosion resistance of Ni-Co alloy coatings[J]. Ceramics International, 2018, 44(6): 6466-6473.

[15] Raghavendra C, Basavarajappa S, Sogalad I. Electrodeposition of Ni-Al 2 O 3 nano composite coating and evaluation of wear characteristics[C] // Proceedings of the IOP conference series: materials science and engineering, IOP Publishing, 2016: 976-982.

[16] Wu G, Li N, Zhou D, et al. Electrodeposited Co-Ni-Al 2 O 3 composite coatings[J]. Surface and Coatings Technology, 2004, 176(2): 157-164.

[17] Mohajeri S, Dolati A, Rezagholibeiki S. Electrodeposition of Ni/WC nano composite in sulfate solution[J]. Materials Chemistry and Physics, 2011, 129(3): 746-750.

[18] Kumar C M P, Lakshmiakshmikanthan A, Chandrashekarappa M P G, et al. Electrodeposition based preparation of Zn-Ni alloy and Zn-Ni-WC nano-composite coatings for corrosion-resistant applications[J]. Coatings, 2021, 11(6): 712.

[19] Wang C, Wang D, Chen W, et al. Tribological properties of nanostructured WC/CoNi and WC/CoNiP coatings produced by electro-deposition[J]. Wear, 2002, 253(5-6): 563-571.

[20] Laszczyńska A, Winiarski J, Szczygie? B, et al. Electrodeposition and characterization of Ni-Mo-ZrO 2 composite coatings[J]. Applied Surface Science, 2016, 369: 224-231.

[21] Li B, Zhang W, Li D. Synthesis and properties of a novel Ni-Co and Ni-Co/ZrO 2 composite coating by DC electrodeposition[J]. Journal of Alloys and Compounds, 2020, 821: 153258.

[22] Arghavanian R, Parvini-Ahmadi N. The effect of co-electrodeposited ZrO 2 particles on the microstructure and corrosion resistance of Ni coatings[J]. Journal of Solid State Electrochemistry, 2010, 15(10): 2199-2204.

[23] Qu N, Zhu D, Chan K. Fabrication of Ni-CeO 2 nanocomposite by electrodeposition[J]. Scripta Materialia, 2006, 54(7): 1421-1425.

[24] Xue Y J, Liu H B, Lan M M, et al. Effect of different electrodeposition methods on oxidation resistance of Ni-CeO 2 nanocomposite coating[J]. Surface and Coatings Technology, 2010, 204(21-22): 3539-3545.

[25] Pompei E, Magagnin l, Lecis N, et al. Electrodeposition of nickel-BN composite coatings[J]. Electrochimica Acta, 2009, 54(9): 2571-2574.

[26] Shahri Z, Allahkaram S R, Zarebidaki A. Electrodeposition and characterization of Co-BN (h) nanocomposite coatings[J]. Applied Surface Science, 2013, 276: 174-181.

[27] Shrestha N K, Sakurada K, Masuko M, et al. Composite coatings of nickel and ceramic particles prepared in two steps[J]. Surface and Coatings Technology, 2001, 140(2): 175-181.

[28] 王渊 . 电泳 - 脉冲电沉积 Ni- 石墨烯纳米复合镀层及其性能研究 [D]. 西安 : 西安科技大学 , 2018.

[29] 田海燕 . 电泳—电沉积镍基纳米复合镀层及其性能的基础研究 [D]. 南京 : 南京航空航天大学 , 2008.

[30] 赵运伟 , 黄巍 , 田海燕 , 等 . 电泳—电沉积 Ni- 金刚石复合镀层及其耐磨性能研究 [J]. 表面技术 , 2013, 42(2): 77-79, 125.

[31] 马瑜曼 . 电泳—电镀沉积 Cu-Mn 3 O 4 复合涂层的制备及性能研究 [D]. 沈阳 : 东北大学冶金学院 , 2020.

[32] 殷凯华 . 电泳—电沉积 Cr/Si 3 N 4 复合镀层的制备及其摩擦磨损性能研究 [D]. 重庆 : 重庆理工大学 , 2022.

[33] 郭忠诚 , 杨显万 . 电沉积多功能复合材料的理论与实践 [M]. 北京 : 冶金工业出版社 , 2002.

[34] Rudnik E, Burzyńska L, Dolasiński?, et al. Electrodeposition of nickel/SiC composites in the presence of cetyltrimethylammonium bromide[J]. Applied Surface Science, 2010, 256(24): 7414-7420.

[35] Orlovskaja L, Periene N, Kurtinaitiene M, et al. Ni-SiC composite plated under a modulated current[J]. Surface and Coatings Technology, 1999, 111(2-3): 234-239.

[36] Hou K, Ger M, Wang L, et al. The wear behaviour of electro-codeposited Ni-SiC composites[J]. Wear, 2002, 253(9-10): 994-1003.

[37] Dehgahi S, Amini R, Alizadeh M. Corrosion, passivation and wear behaviors of electrodeposited Ni-Al2O 3 -SiC nano-composite coatings[J]. Surface and Coatings Technology, 2016, 304: 502-511.

[38] Juneghani M A, Farzam M, Zohdirad H. Wear and corrosion resistance and electroplating characteristics of electrodeposited Cr-SiC nano-composite coatings[J]. Transactions of Nonferrous Metals Society of China, 2013, 23(7): 1993-2001.

[39] Tey E, Zainal Z, Pah L K, et al. Effect of mechanical agitation on Cr-Al 2 O 3 nanocomposite coatings fabricated from trivalent chromium electrodeposition[J]. Solid State Phenomena, 2021, 317: 506-514.

[40] Demir M, Kanca E, Karahan ? H. Characterization of electrodeposited Ni-Cr/hBN composite coatings[J]. Journal of Alloys and Compounds, 2020, 844: 155511.

[41] 孙垂康 , 贾卫平 , 周绍安 , 等 . 超声辅助脉冲电沉积 Ni-TiN 复合镀层的结合力和耐蚀 [J]. 材料保护 , 2021, 54(4): 80-85.

[42] Arghavanian R, Parvini Ahmadi N. Electrodeposition of Ni-ZrO 2 composite coatings and evaluation of particle distribution and corrosion resistance[J]. Surface Engineering, 2013, 27(9): 649-654.

[43] Szczygie? B, Ko?odziej M. Composite Ni/Al 2 O 3 coatings and their corrosion resistance[J]. Electrochimica Acta, 2005, 50(20): 4188-4195.

[44] Dehgahi S, Amini r, Alizadeh M. Microstructure and corrosion resistance of Ni-Al 2 O 3 -SiC nanocomposite coatings produced by electrodeposition technique[J]. Journal of Alloys and Compounds, 2017, 692: 622-628.

[45] Zhang B, Zhang Q, Zhang Z, et al. Incorporation of nano/micron-SiC particles in Ni-based composite coatings towards enhanced mechanical and anti-corrosion properties[J]. International Journal of Minerals, Metallurgy and Materials, 2022, 29(1): 153-160.

[46] Jin P, Sun C, Zhou C, et al. Effect of SiC particle size on structures and properties of Ni-SiC nanocomposites deposited by magnetic pulse electrodeposition technology[J]. Ceramics International, 2019, 45(16): 20155-20164.

[47] Nazir M H, Khan Z A, Saeed A, et al. Analyzing and modelling the corrosion behavior of Ni/Al 2 O 3 , Ni/SiC, Ni/ZrO 2 and Ni/graphene nanocomposite coatings[J]. Materials (Basel), 2017, 10(11): 1225.

[48] Budi E, Tandri C, Darsono N, et al. Preliminary study on high-temperature oxidation of Ni-AlN-TiN/Si 3 N 4 electrodeposition composite coatings[C] // Proceedings of the Journal of Physics: Conference Series, IOP Publishing, 2021: 012067.

[49] Ebrahimifar H. Oxidation and electrical behavior of AISI 430 steel coated with Ni-P-TiO 2 -ZrO 2 composite for SOFC interconnect application[J]. Journal of Materials Science: Materials in Electronics, 2020, 31(20): 17183-17201.

[50] Meng J S, Ji Z S. Effect of La 2 O 3 /CeO 2 particle size on high-temperature oxidation resistance of electrodeposited Ni-La 2 O 3 /CeO 2 composites[J]. Transactions of Nonferrous Metals Society of China, 2014, 24(11): 3571-3577.

[51] Zhang H J, Zhou Y B, Sun J F. Preparation and oxidation behavior of electrodeposited Ni-CeO 2 nanocomposite coatings[J]. Transactions of Nonferrous Metals Society of China, 2013, 23(7): 2011-2020.

[52] Farrokhzad M A, Khan T I. High temperature oxidation of nickel-based cermet coatings composed of Al 2 O 3 and TiO 2 nanosized particles[J]. Oxidation of Metals, 2013, 81(1-2): 267-285.

[53] Khoran E, Zandrahimi M, Ebrahimifar H. Microstructure and oxidation behavior of Ni-TiO 2 composite coating at high temperature[J]. Oxidation of Metals, 2018, 91(1-2): 177-189.

[54] Mosavi A, Ebrahimifar H. Investigation of oxidation and electrical behavior of AISI 430 steel coated with Mn-Co-CeO 2 composite[J]. International Journal of Hydrogen Energy, 2020, 45(4): 3145-3162.

[55] Gorouh A A, Zandrahimi M, Ebrahimifar H. Investigation of oxidation behaviour of AISI-430 steel interconnects in the presence of Ni-Co-CeO 2 composite coating for application of solid oxide fuel cells[J]. Bulletin of Materials Science, 2020, 43(1): 221.

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备注/Memo

收稿日期: 2022-10-16 修回日期: 2022-11-07 * 通信作者: 张帮彦( 1986 ―),男,博士,讲师,研究方向为腐蚀 / 耐磨防护涂层及其优化技术, email : zby@nchu.edu.cn 基金项目: 国家自然科学基金(青年)项目( 51901097 );江西省自然科学基金(青年)项目( 20212BAB214036 );江西省金属材料微结构调控重点实验室(南昌航空大学)开放基金?/html>

更新日期/Last Update: 2023-01-03