METALS AND METAL MATRIX COMPOSITES |
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Research Progress on Preparation of Composite Coating by Aluminizing and Micro-arc Oxidation Hybrid Process |
WU Hong1, SHAO Mingzeng2,3,*, YANG Hongbo2,3
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1 School of Mechanical and Electrical Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China 2 School of Metallurgical Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China 3 Shaanxi Engineering Technology Research Center for Wear-resistant Materials, Xi'an 710055, China |
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Abstract The aluminizing and micro-arc oxidation hybrid process can be used to prepare composite coating mainly composed of alumina on the surfaces of various materials such as steel, magnesium alloy, titanium alloy, ceramics, and even polymers in order to improve the insulation, wear resistance, and corrosion resistance of these materials. This article provides an overview of the research progress on the preparation of composite coatings by combining aluminizing processes such as hot dipping, spraying, physical vapor deposition, molten salt electroplating and embedding infiltration with micro-arc oxidation. The structural characteristics of the coatings, influencing factors, advantages and disadvantages of various hybrid processes are mainly analyzed. Finally, the future development of the aluminizing and micro-arc oxidation hybrid process is prospected and the urgent problems to be solved in this field are proposed.
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Published: 25 July 2024
Online: 2024-08-12
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Fund:Special Research Project of Shaanxi Provincial Department of Education (18JK0475), Natural Science Basic Research Program of Shaanxi (2021JM369). |
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1 Volodymyr H, Mykhailo S, Volodymyr P,et al. Journal of Materials Research and Technology, 2021, 14, 1682. 2 Zhou G H, Ding H Y, Zhang Y, et al. Tribology Letters, 2010, 40, 319. 3 Yang H. Control of insulation properties based on microstructure of tita-nium alloy micro-arc oxidation ceramic coating. Master's Thesis, Xi'an University of Technology, China, 2023 (in Chinese). 杨海. 基于钛合金微弧氧化陶瓷层微结构的绝缘性能调控. 硕士学位论文, 西安理工大学, 2023. 4 Zhang X, Zhou L, Jia H Y, et al. Surface Technology, 2023, 52(3), 122 (in Chinese). 张祥, 周亮, 贾宏耀, 等. 表面技术, 2023, 52(3), 122. 5 Tang Y Y, Li L B, Wang C, et al. Surface Technology, 2022, 51(4), 66 (in Chinese). 唐洋洋, 李林波, 王超, 等. 表面技术, 2022, 51(4), 66. 6 Joo J, Kim D, Moon H, et al. Applied Surface Science, 2020, 509, 145361. 7 Martin J, Akoda K, Ntomprougkidis V, et al. Surface and Coatings Technology, 2020, 392, 125756. 8 Pan B T, Li Y Y, Wang J X, et al. Materials Protection, 2022, 55(10), 171 (in Chinese). 潘波涛, 李园园, 王锦霞, 等. 材料保护, 2022, 55(10), 171. 9 Barekatain H, Mousavi K S M. Surface and Coatings Technology, 2020, 384, 125339. 10 Hu C, Chiu P. International Journal of Electrochemical Science, 2015, 10(5), 4290. 11 Koshuro V, Fomin A, Rodionov I. Ceramics International, 2018, 44(11), 12593. 12 López-Ortega A, Arana J L, Rodríguez E, et al. Corrosion Science, 2018, 143, 258. 13 Martin J, Maizeray A, Da Silva T C, et al. Materials Today Communications, 2023, 36, 106676. 14 Wu Y P, Wang Q F, Jiang C, et al. Journal of Functional Materials, 2016, 47(9), 9187 (in Chinese). 吴艳萍, 王庆富, 蒋驰, 等. 功能材料, 2016, 47(9), 9187. 15 Zhang W, Xin L, Fu Y, et al. Heat Treatment and Surface Engineering, 2022, 4(1), 76. 16 Lyu Z Q, Li L L, Hong D S,et al. Electroplating & Pollution Control, 2018, 38(4), 42 (in Chinese). 吕振清, 李蕾蕾, 洪逗莎, 等. 电镀与环保, 2018, 38(4), 42. 17 Huang Z J, Li Z, Jiang Z Q, et al. China Surface Engineering, 2017, 30(4), 45 (in Chinese). 黄祖江, 李智, 蒋智秋, 等. 中国表面工程, 2017, 30(4), 45. 18 Chen K M. Microstructure and properties of electroplating aluminum coa-ting treated by micro-arc oxidation process on Q235 steel. Master's Thesis, Dalian Jiaotong University, China, 2008 (in Chinese). 陈凯敏. Q235钢表面电镀铝层微弧氧化处理后的组织结构和性能. 硕士学位论文, 大连交通大学, 2008. 19 Pezzato L, Settimi A G, Cerchier P, et al. Coatings, 2020, 10(5), 448. 20 Song W, Zheng C T, Sun X F, et al. Journal of Academy of Armored Force Engineering, 2018, 32(6), 107 (in Chinese). 宋巍, 郑才涛, 孙晓峰, 等. 装甲兵工程学院学报, 2018, 32(6), 107. 21 Wang H. Preparation and properties of ceramic coating on Q235 low-carbon steel by micro-arc oxidation. Master's Thesis, Qingdao University of Science and Technology, China, 2014 (in Chinese). 王晖. Q235低碳钢表面陶瓷膜的制备与性能研究. 硕士学位论文, 青岛科技大学, 2014. 22 Xu S M.Study on the process of micro-arc oxidation on hot-dip aluminized surface on 304 hot-rolled stainless steel. Master's Thesis, China University of Petroleum (East China), China, 2014 (in Chinese). 徐淑苗. 304热轧不锈钢热浸镀铝表面微弧氧化工艺研究. 硕士学位论文, 中国石油大学(华东), 2014. 23 Amruthaluru S K, Hariprasad S, Sukumaran A, et al. Surface and Coa-tings Technology, 2019, 372, 239. 24 Wang W, Feng S, Li Z, et al. Journal of Materials Research and Techno-logy, 2020, 9(3), 6014. 25 Zhao X, Liu A L, Xu J W. Materials Protection, 2010, 43(1), 62(in Chinese). 赵霞, 刘爱莲, 徐家文. 材料保护, 2010, 43(1), 62. 26 Hung J, Liu Y, Tsui H, et al. Surface and Coatings Technology, 2019, 378, 124995. 27 Zhang J, Fan Y, Zhao X, et al. Surface and Coatings Technology, 2018, 337, 141. 28 Lu L, Zhang J, Shen D, et al. Journal of Alloys and Compounds, 2012, 512(1), 57. 29 Jun F, Min D, Fanya J, et al. Rare Metal Materials and Engineering, 2016, 45(2), 315. 30 Wang X F. Fabrication of novel tritium permeation barriers via hot-dipping aluminum combined with micro-arc oxidation and the Al2O3 crystalline structure adjusting in the gradient composite coating. Master's Thesis, Southwest Jiaotong University, China, 2017 (in Chinese). 王雪飞. 316L不锈钢微弧氧化复合阻氚涂层制备及其晶型调控. 硕士学位论文, 西南交通大学, 2017. 31 Wu Z Q, Xia Y, Zhang C J, et al. Journal of Inorganic Materials, 2007(3), 534 (in Chinese). 吴振强, 夏原, 张春杰, 等. 无机材料学报, 2007(3), 534. 32 Wu Z Q, Xia Y, Guan Y J. Transactions of Materials and Heat Treatment, 2006(2), 103 (in Chinese). 吴振强, 夏原, 关永军. 材料热处理学报, 2006(2), 103. 33 Huang Y L, Sun X F, Li Z M, et al. Journal of Academy of Armored Force Engineering, 2015, 29(3), 105 (in Chinese). 黄元林, 孙晓峰, 李占明, 等. 装甲兵工程学院学报, 2015, 29(3), 105. 34 Zhao G, Zhao J. Rare Metals, 2012, 31(4), 362. 35 Celtik C, Yurekturk Y, Gecu R, et al. Transactions of the Institute of Metal Finishing, 2022, 100(3), 159. 36 Wang S, Zhou L, Li C, et al. Coatings, 2020, 10(4), 374. 37 Wang S, Zhou L, Li C, et al. Materials, 2019, 12(5), 799. 38 Wu Y. Research of composite coating on TC4 titanium alloy surface. Master's Thesis, Shenyang Ligong University, China, 2016 (in Chinese). 武媛. TC4钛合金表面复合涂层的研究. 硕士学位论文, 沈阳理工大学, 2016. 39 Yürektürk Y. Surface and Coatings Technology, 2022, 433, 128170. 40 Wang S, Zhou L, Li C, et al. Applied Surface Science, 2020, 508, 144761. 41 Fu M J. Study on preparation of antioxidant ceramic coating by micro-arc oxidation on pure molybdenum surface. Master's Thesis, Chang'an University, China, 2022 (in Chinese). 符明君. 纯钼表面微弧氧化法制备抗氧化陶瓷涂层研究. 硕士学位论文, 长安大学, 2022. 42 Hung J, Ku C, Fan Z. Procedia CIRP, 2018, 68, 438. 43 Sun G, He X, Jiang J, et al. Journal of Thermal Spray Technology, 2013, 22(1), 27. 44 Sun G H. Study of alumina coatings onto carbon fiber reinforced polymer matrix composite, Ph.D. Thesis, Harbin Institute of Technology, China, 2013 (in Chinese). 孙冠宏. 碳纤维增强树脂基复合材料表面氧化铝层制备及性能研究. 博士学位论文, 哈尔滨工业大学, 2013. 45 Pokhmurskii V, Nykyforchyn H, Student M, et al. Journal of Thermal Spray Technology, 2007, 16(5-6), 998. 46 Lampke T, Meyer D, Alisch G, et al. Surface and Coatings Technology, 2011, 206(7), 2012. 47 Song X Q, Zhang J F, Li C X, et al. Surface Technology, 2013, 42(4), 39 (in Chinese). 宋信强, 张吉阜, 李朝兴, 等. 表面技术, 2013, 42(4), 39. 48 Song X Q. Investigation on preparation and corrosion resistance of high velocity oxy-fuel (HVOF) and micro-arc oxidation (MAO) composite films on Mg alloy. Master's Thesis, Central South University, China, 2013(in Chinese). 宋信强. Mg合金超音速火焰喷涂铝-微弧氧化复合膜的制备与耐蚀性研究. 硕士学位论文, 中南大学, 2013. 49 Hutsaylyuk V, Student M, Posuvailo V, et al. Vacuum, 2020, 179, 109514. 50 Zhao J H, Zhang Z W, Wang Z H. Chinese Journal of Rare Metals, 2013, 37(4), 549 (in Chinese). 赵建华, 张宗伟, 王自红. 稀有金属, 2013, 37(4), 549. 51 Gu W, Shen D, Wang Y, et al. Applied Surface Science, 2006, 252(8), 2927. 52 Yürektürk Y. Journal of Thermal Spray Technology, 2021, 30(5), 1274. 53 Li Z S, Wu H L, Ding X X, et al. Journal of Materials Engineering, 2021, 49(12), 57 (in Chinese). 李忠盛, 吴护林, 丁星星, 等. 材料工程, 2021, 49(12), 57. 54 Kuznetsov Y, Kravchenko I, Gerashchenkov D, et al. Energies, 2022, 15(3), 912. 55 Shao M Z, Wang W, Yang H B, et al. Coatings, 2021, 11(11), 1288. 56 Rama K L, Poshal G, Jyothirmayi A, et al. Journal of Alloys and Compounds, 2013, 578, 355. 57 Li L B, Luo H J, Du H, et al. Surface Technology, 2022, 51(1), 303 (in Chinese). 李林波, 罗洪杰, 杜昊, 等. 表面技术, 2022, 51(1), 303. 58 Chen J X. Research on structure and properties of cold sprayed aluminum and micro-arc oxidation film on AZ31 magnesium alloy. Master's Thesis, Hunan University, China, 2019 (in Chinese). 陈金雄. AZ31镁合金冷喷涂铝及微弧氧化膜结构与性能研究. 硕士学位论文, 湖南大学, 2019. 59 Tazegul O, Muhaffel F, Meydanoglu O, et al. Surface and Coatings Technology, 2014, 258, 168. 60 Zhang Y, Wang Q, Ye R, et al. Journal of Alloys and Compounds, 2022, 892, 162094. 61 Khanna R, Kokubo T, Matsushita T, et al. Materials Science and Engineering C, 2015, 55, 393. 62 Khanna R, Kokubo T, Matsushita T, et al. Materials Science and Engineering C, 2016, 69, 1229. 63 Rao Y, Wang Q, Oka D, et al. Surface and Coatings Technology, 2020, 383, 125271. 64 Wei B, Cheng Y, Liu Y, et al. Transactions of Nonferrous Metals Society of China, 2021, 31(8), 2287. 65 Huo H D. Preparation and properties of composite ceramic layer formed by micro-arc oxidation on magnesium alloy. Master's Thesis, Taiyuan University of Technology, China, 2015 (in Chinese). 霍慧丹. 镁合金微弧氧化复合陶瓷层的制备及其性能研究. 硕士学位论文, 太原理工大学, 2015. 66 Wang X B, Quan F M, Zhu S F, et al. Transactions of Materials and Heat Treatment, 2018, 39(9), 99 (in Chinese). 王晓波, 全风美, 朱生发, 等. 材料热处理学报, 2018, 39(9), 99. 67 Hu F, Dai M J, Lin S S, et al. China Surface Engineering, 2015, 28(1), 49 (in Chinese). 胡芳, 代明江, 林松盛, 等. 中国表面工程, 2015, 28(1), 49. 68 Bu T, Yang L, Liu W J, et al. Technology development, 2016, 35(26), 14 (in Chinese). 卜彤, 杨莲, 刘为杰, 等. 企业技术开发, 2016, 35(26), 14. 69 Jiang D X. Investigations on micro-arc oxidation process and wear resis-tance of aluminum alloy coating on titanium alloy surface. Master's Thesis, University of Science and Technology Liaoning, China, 2019 (in Chinese). 姜冬雪. 钛合金表面铝合金涂层微弧氧化工艺及耐磨性研究. 硕士学位论文, 辽宁科技大学, 2019. 70 Fu Y. Study on the preparation and properties of micro-arc oxide film of titanium alloy plating. Master's Thesis, Shenyang University of Technology, China, 2018 (in Chinese). 付颖. 钛合金镀铝层微弧氧化膜的制备及性能研究. 硕士学位论文, 沈阳工业大学, 2018. 71 Ding Z M, Chen K M, Shen C B, et al. Transactions of Materials and Heat Treatment, 2008, 29(5), 169 (in Chinese). 丁志敏, 陈凯敏, 沈长斌, 等. 材料热处理学报, 2008, 29(5), 169. 72 Ding Z M, Wang S J, Shen C B, et al. Tribology, 2009, 29(5), 447 (in Chinese). 丁志敏, 王树娟, 沈长斌, 等. 摩擦学学报, 2009, 29(5), 447. 73 Zhang Y P. Study on the preparation and performance of Al-Gd plating and micro-arc oxidation film. Master's Thesis, Yanshan University, China, 2018 (in Chinese). 张亚萍. 铝钆镀层与微弧氧化膜的制备及性能研究. 硕士学位论文, 燕山大学, 2018. 74 Li L H. Study on the performance of Al-Y coatings and micro-arc oxidation membrane. Master's Thesis, Yanshan University, China, 2015 (in Chinese). 李玲慧. 铝钇镀层及微弧氧化膜性能的研究. 硕士学位论文, 燕山大学, 2015. 75 Yin M M. Study on the preparation and performance of Al-Er alloy plating and micro-arc oxidation film. Master's Thesis, Yanshan University, China, 2017 (in Chinese). 殷苗苗. 铝铒合金镀层及微弧氧化膜的制备与性能研究. 硕士学位论文, 燕山大学, 2017. 76 Huang Z J, Jiang Z Q, Dong W B, et al. Journal of Materials Enginee-ring, 2018, 46(1), 44(in Chinese). 黄祖江, 蒋智秋, 董婉冰, 等. 材料工程, 2018, 46(1), 44. 77 Huang M, Wang Y, Chu C, et al. Ceramics International, 2017, 43(8), 6397. 78 Li Z, Huang Z J, Tang S G, et al. Materials Protection, 2017, 50(5), 64(in Chinese). 李智, 黄祖江, 唐仕光, 等. 材料保护, 2017, 50(5), 64. 79 Cai H. Microstructure and high temperature oxidation resistance propeties of packing al and Al-Si cementation on TA15 alloy. Master's Thesis, Harbin Institute of Technology, China, 2017 (in Chinese). 蔡槐. 钛合金包埋渗铝及硅铝共渗层组织结构与高温抗氧化性能. 硕士学位论文, 哈尔滨工业大学, 2017. |
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