INORGANIC MATERIALS AND CERAMIC MATRIX COMPOSITES |
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Application Status and Prospect of Plasma Spraying for Preparing Engineered Ceramic Coatings |
WANG Zhehao1,2,*, LYU Xuming1,2
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1 Research Institute of Physical and Chemical Engineering of Nuclear Industry, Tianjin 300180, China 2 National Key Laboratory of Particle Transport and Separation Technology, Tianjin 300180, China |
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Abstract As a mature surface treatment technology, plasma spraying for substrate play an increasingly important role in surface-enhanced process due to its wide application range, high production efficiency and good quality. Meanwhile, more and more results demonstrated that ceramic coatings play a critical role in overall performance improvement and service lifetime extension of materials. This paper reviews the development of ceramic coatings prepared by conventional plasma spraying technique, including atmospheric plasma spraying, supersonic atmospheric plasma spraying, suspension plasma spraying, vacuum plasma spraying and low pressure plasma spraying. Then, the advantages and shortcomings of each preparation method have also been summarized. Finally, based on above contents, the future development of plasma sprayed ceramic coatings are prospected.
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Online: 2024-06-25
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1 Ji M M, Zhu S Z, Ma Z. Surface Technology, 2021, 50(1), 253 (in Chinese). 姬梅梅, 朱时珍, 马壮. 表面技术, 2021, 50(1), 253. 2 Yang H Y, Chen H, Zhang R Q, et al. Surface Technology, 2022, 51(7), 87 (in Chinese). 杨红艳, 陈寰, 张瑞谦, 等. 表面技术, 2022, 51(7), 87. 3 Liu S H, Trelles J P, Li C J, et al. Materials Today Physics, 2022, 27, 100832. 4 Song J B, Wang L S, Dong H, et al. Ceramics International, 2023, 49, 1. 5 Liu B, Liu Y, Zhu C, et al. Journal of Materials Science and Technology, 2019, 35(5), 833. 6 Lynam A, Romero A R, Xu F, et al. Journal Thermal Spray Technology, 2022, 31, 745. 7 Dai X M. Nanoceramic materials and their applications, National Defence Industry Press, China, 2005, pp.14 (in Chinese). 戴遐明. 纳米陶瓷材料及其应用, 国防工业出版社, 2005, pp.14. 8 Wang W Z, Ma G Z, Han H, et al. Journal of Mechanical Engineering, 2023, 59(7), 92 (in Chinese). 王伟志, 马国政, 韩珩, 等. 机械工程学报, 2023, 59(7), 92. 9 Yao J W, Zhao W D, Mei D Q, et al. Journal of Chongqing University of Technology(Natural Science), 2023, 37(6), 178 (in Chinese). 姚江微, 赵卫东, 梅德清, 等. 重庆理工大学学报(自然科学), 2023, 37(6), 178. 10 Attarzadeh N, Molaei M, Babaei K, et al. Surfaces and Interfaces, 2021, 23, 100977. 11 Luo X H, Hua G R, Ju Z L. Journal of Nantong University (Natural Science), 2007(1), 63 (in Chinese). 罗新华, 花国然, 居志兰. 南通大学学报(自然科学版), 2007(1), 63. 12 Yang Y C. Manufacture of Al2O3-MgAl2O4multilayer coating by APS and its dielectric properties. Master's Thesis, Yanshan University, China, 2014 (in Chinese). 杨英春. 大气等离子喷涂Al2O3-MgAl2O4多层型涂层及其介电性能. 硕士学位论文, 燕山大学, 2014. 13 Shi X J. The research of tritium penetration barrier prepared by atmospheric plasma spraying and centrifugal SHS. Master's Thesis, Southwest Jiaotong University, China, 2016 (in Chinese). 史小娇. 大气等离子喷涂法、离心燃烧合成法制备防氚涂层. 硕士学位论文, 西南交通大学, 2016. 14 Gao S H. Fabrication and properties of Al2O3-based wear-resistant hydrophobic non-stick coatings. Master's Thesis, Guangdong University of Technology, China, 2018 (in Chinese). 高硕洪. 新型Al2O3基耐磨疏水不粘涂层的制备及性能研究. 硕士学位论文, 广东工业大学, 2018. 15 Zhang J X, Cheng X Y. Hot Working Technology, 2013, 42(12), 18 (in Chinese). 张金星, 程西云. 热加工工艺, 2013, 42(12), 18. 16 Liu Q, Wang Y Q, Su X Y, et al. China Surface Engineering, 2014, 27(6), 135 (in Chinese). 刘前, 王优强, 苏新勇, 等. 中国表面工程, 2014, 27(6), 135. 17 Sun J H, Chen F, Shen J J. In:The 20th International Academic Confe-rence. Shenyang, 2017, pp.7 (in Chinese). 孙景和, 陈锋, 沈健健. 第二十届国际热喷涂研讨会(ITSS'2017)暨第二十一届全国热喷涂年会(CNTSC'2017)论文集. 沈阳, 2017, pp.7. 18 Ji S W. Science and Technology & Innovation, 2016(12), 16 (in Chinese). 吉世文. 科技与创新, 2016(12), 16. 19 Wu Y P, Li W G, Zhao Y T, et al. Materials for Mechanical Enginee-ring, 2019, 43(12), 34 (in Chinese). 吴艳鹏, 李文戈, 赵远涛, 等. 机械工程材料, 2019, 43(12), 34. 20 Li X Y, Shao H H, Zhang B S, et al. Materials Protection, 2019, 52(10), 1 (in Chinese). 李新芽, 邵红红, 张保森, 等. 材料保护, 2019, 52(10), 1. 21 Yang K, Niu S P, Deng C M, et al. Surface Technology, 2020, 49(8), 63 (in Chinese). 杨焜, 牛少鹏, 邓春明, 等. 表面技术, 2020, 49(8), 63. 22 Li M. Fabrication and properties of erosion resistance gradient coating for outer cylinder of MWD instrument. Master's Thesis, Changzhou University, China, 2022 (in Chinese). 李敏. MWD外筒抗冲蚀梯度涂层的制备与性能研究. 硕士学位论文, 常州大学, 2022. 23 Tang S C. Effect of CeO2content on corrosion resistance of Al2O3-10TiO2 composite ceramic coating. Master's Thesis, Xihua University, China, 2023 (in Chinese). 唐思成. CeO2含量对Al2O3-10TiO2复合陶瓷涂层耐腐蚀性能的影响. 硕士学位论文, 西华大学, 2023. 24 Wang N. Research on preparation of PTFE/Al2O3-13wt%TiO2 composite coating and its properties. Master's Thesis, Shandong University of Technology, China, 2023 (in Chinese). 王宁. PTFE/Al2O3-13wt%TiO2复合涂层的制备及其性能研究. 硕士学位论文, 山东理工大学2023. 25 Xu Y J. Thermal properties and microstructures analysis of YSZ and YSZ-Al2O3 thermal barrier coatings. Master's Thesis, Shanghai Institute of Technology, China, 2021 (in Chinese). 许燕杰. YSZ和YSZ-Al2O3热障涂层热学性能与显微结构分析. 硕士学位论文, 上海应用技术大学, 2021. 26 Feng J. Study on microstructure, phase composition and the capacitance characteristics of YSZ thermal barrier coatings prepared by APS. Master's Thesis, Dalian Maritime University, China, 2013 (in Chinese). 冯健. 大气等离子喷涂YSZ热障涂层微观组织、相组成及电容特性的研究. 硕士学位论文, 大连海事大学, 2013. 27 Li R W, Gong W B. Journal of Ceramics, 2016, 37(5), 478 (in Chinese). 李任伟, 宫文彪. 陶瓷学报, 2016, 37(5), 478. 28 Gao M H, Xu N, Zhang J. In:The 22th International Academic Confe-rence. Ma'anshan, 2019, pp.6 (in Chinese). 高明浩, 徐娜, 张甲, 等. 第二十二届国际热喷涂研讨会(ITSS'2019)暨第二十三届全国热喷涂年会(CNTSC'2019)论文集. 马鞍山, 2019, pp.6. 29 Wei C K. Microstructure and properties of plasma sprayed nano YSZ coa-ting and changes in diffraction peaks during thermal shocks. Master's Thesis, Dalian Maritime University, China, 2021 (in Chinese). 魏诚凯. 等离子喷涂纳米YSZ涂层的组织性能与热震实验中衍射峰变化研究. 硕士学位论文, 大连海事大学, 2021. 30 Cao Y P, Wang Q S, Liu Y B, et al. Rare Metal Materials and Enginee-ring, 2018, 47(S1), 164 (in Chinese). 曹毓鹏, 王全胜, 柳彦博, 等. 稀有金属材料与工程, 2018, 47(S1), 164. 31 Wang C, Pang X J, Gao Z H, et al. Materials Reports, 2018, 32(4), 563 (in Chinese). 汪倡, 庞学佳, 高宗鸿, 等. 材料导报, 2018, 32(4), 563. 32 Zhang Y N, Wang K L, Zhu J P, et al. Thermal Spray Technology, 2022, 14(3), 13 (in Chinese). 张亚宁, 汪凯伦, 朱锦鹏, 等. 热喷涂技术, 2022, 14(3), 13. 33 Yang P, Yang D, Hao E, et al. Surface and Coatings Technology, 2021, 409, 126903. 34 Cui Y Y, Zhou L, Zhang Y M, et al. Contemporary Chemical Industry, 2013, 42(6), 760 (in Chinese). 崔艳艳, 周莉, 张咏梅, 等. 当代化工, 2013, 42(6), 760. 35 Mao Z P. An investigation on the properties and surface laser treatment of TiB2-TiC0.3N0.7based composited coating deposited by reactive plasma spraying. Ph. D. Thesis, Shanghai Jiaotong University, China, 2021 (in Chinese). 毛正平. 反应等离子喷涂TiB2-TiC0.3N0.7基复合涂层组织性能及其表面激光重熔研究. 博士学位论文, 上海交通大学, 2011. 36 Liu M R, Cheng H C. Hot Working Technology, 2014, 43(6), 133 (in Chinese). 刘梦茹, 程汉池. 热加工工艺, 2014, 43(6), 133. 37 Xu D H. Study on microstructure and properties of TiB2-TiC-Co cermet coating sprayed by atmospheric plasma. Master's Thesis, Harbin University of Science and Technology, China, 2021 (in Chinese). 徐敦昊. 大气等离子喷涂TiB2-TiC-Co金属陶瓷涂层的组织及性能研究. 硕士学位论文, 哈尔滨理工大学, 2021. 38 Wang J, Bai S X, Li S, et al. Heat Treatment of Metals, 2010, 35(4), 24 (in Chinese). 王璟, 白书欣, 李顺, 等. 金属热处理, 2010, 35(4), 24. 39 Wang J, Bai S X, Li S, et al. Rare Metal Materials and Engineering, 2010, 39(5), 824 (in Chinese). 王璟, 白书欣, 李顺, 等. 稀有金属材料与工程, 2010, 39(5), 824. 40 Zhang W H. Microstructure and CMAS corrosion behaviour of rare-earth zirconate thermal barrier coatings. Master's Thesis, Harbin Institute of Technology, China, 2014 (in Chinese). 张维亨. R2Zr2O7型稀土锆酸盐热障涂层的组织结构及CMAS腐蚀行为. 硕士学位论文, 哈尔滨工业大学, 2014. 41 Xu L. Investigation of preparation process and properties for plasma etc-hing resistant YF3 coating. Master's Thesis, Sichuan University, China, 2022 (in Chinese). 薛令. 耐等离子刻蚀YF3涂层的制备工艺及性能研究. 硕士学位论文, 四川大学, 2022. 42 Li P. Corrosion resistance of 316L stainless steel plasma sprayed with ceramic coatings during corrosion in molten zinc. Master's Thesis, Inner Mongolia University of Technology, China, 2015 (in Chinese). 李鹏. 喷涂陶瓷涂层316L不锈钢的耐熔锌腐蚀性能. 硕士学位论文, 内蒙古工业大学, 2015. 43 Li Y. Research on high temperature oxidation resistance of Y2O3-modified ZrB2-SiC coating for carbon/carbon composites. Master's Thesis, Nanjing University of Aeronautics and Astronautics, China, 2021 (in Chinese). 李阳. C/C复合材料表面Y2O3改性ZrB2-SiC涂层抗高温氧化性能研究. 硕士学位论文, 南京航空航天大学, 2021. 44 Xie M S, Ma Z, Liu Y B, et al. Thermal Spray Technology, 2020, 12(3), 30 (in Chinese). 谢明劭, 马壮, 柳彦博, 等. 热喷涂技术, 2020, 12(3), 30. 45 Yao Q Q, Gou H L, Jia J H, et al. Surface Technology, 2020, 49(11), 93 (in Chinese). 姚仟仟, 苟海龙, 贾均红, 等. 表面技术, 2020, 49(11), 93. 46 Yao Q Q, Chen T J, Jia J H, et al. Hot Working Technology, 2022, 51(2), 91 (in Chinese). 姚仟仟, 陈体军, 贾均红, 等. 热加工工艺, 2022, 51(2), 91. 47 Zhang S R, Dong H Y, Ma W, et al. Journal of Chinese Society for Corrosion and Protection, 2017, 37(1), 53 (in Chinese). 张珊榕, 董红英, 马文, 等. 中国腐蚀与防护学报, 2017, 37(1), 53. 48 Zhu S, Liu S C, Xu B S, et al. Journal of Academy of Armored Force Engineering, 1994(Z1), 144 (in Chinese). 朱胜, 刘世参, 徐滨士, 等. 装甲兵工程学院学报, 1994(Z1), 144. 49 Ma J L. Study on the microstructure and tribological properties of nanostructured Al2O3-TiO2composite ceramic coatings prepared by supersonic plasma spraying. Master's Thesis, Hebei University of Technology, China, 2014 (in Chinese). 马建龙. 超音速等离子喷涂纳米Al2O3-TiO2复合陶瓷涂层组织结构及摩擦学性能的研究. 硕士学位论文, 河北工业大学, 2014. 50 Wang H J, Yang Z K, Liu M, et al. Thermal Spray Technology, 2015, 7(1), 21 (in Chinese). 王海军, 杨振凯, 刘明, 等. 热喷涂技术, 2015, 7(1), 21. 51 Wang H J, Xie Z Q, Guo Y M, et al. Chinese Surface Engineering, 2010, 23(3), 84 (in Chinese). 王海军, 谢兆钱, 郭永明, 等. 中国表面工程, 2010, 23(3), 84. 52 Wang H J, Zhu S, Guo Y M, et al. Metal Forming (Surface Engineering Technology), 2008(18), 38 (in Chinese). 王海军, 朱胜, 郭永明, 等. 金属加工(热加工), 2008(18), 38. 53 Zhu S, Guo Y C. Mechinist Metal Forming, 2005(9), 24 (in Chinese). 朱胜, 郭迎春. 机械工人, 2005(9), 24. 54 Xu B S, Wang H J, Zhu S, et al. Manufacturing Technology & Machine Tool, 2003(2), 31 (in Chinese). 徐滨士, 王海军, 朱胜, 等. 制造技术与机床, 2003(2), 31. 55 Li C Q, Ye X L, Deng Z C, et al. Heat Treatment of Metals, 2016, 41(10), 71 (in Chinese). 李长青, 叶雄林, 邓智昌, 等. 金属热处理, 2016, 41(10), 71. 56 Li C Q, Ma S N, Deng Z C, et al. Hot Working Technology, 2003(6), 31 (in Chinese). 李长青, 马世宁, 邓智昌, 等. 热加工工艺, 2003(6), 31. 57 Zhang D M, Ren X J, Ma J H, et al. Nonferrous Metals (Mineral Processing Section), 2008(S1), 82 (in Chinese). 章德铭, 任先京, 马江虹, 等. 有色金属(冶炼部分), 2008(S1), 82. 58 Zhu L T. Investigation of supersonic plasma sprayed ZrO2-MoSi2compound coatings on mold plates of CuCrZr Alloy. Master's Thesis, Xi'an University of Architecture and Technology, China, 2017 (in Chinese). 朱浪涛. 结晶器CuCrZr铜板表面超音速等离子喷涂制备ZrO2-MoSi2复合涂层. 硕士学位论文, 西安建筑科技大学, 2017. 59 Mao J, Deng C M, Kuang Z Q, et al. Transactions of Materials Heat Treatment, 2015, 36(1), 143 (in Chinese). 毛杰, 邓春明, 邝子奇, 等. 材料热处理学报, 2015, 36(1), 143. 60 Mao J, Song J B, Deng C G, et al. Surface Technology, 2014, 43(4), 110 (in Chinese). 毛杰, 宋进兵, 邓畅光, 等. 表面技术, 2014, 43(4), 110. 61 Gao C Q, Liu H J, Liu J C, et al. Thermal Spray Technology, 2016, 8(3), 43 (in Chinese). 高朝卿, 刘洪军, 刘久成, 等. 热喷涂技术, 2016, 8(3), 43. 62 Xiong X Y. Fabrication and properties of plasma sprayed nanomater and micron alumina coatings. Master's Thesis, Dalian Maritime University, China, 2018 (in Chinese). 熊璇玥. 等离子喷涂纳米及微米氧化铝涂层的制备与性能研究. 硕士学位论文, 大连海事大学, 2018. 63 Zhou J H, Huang C. Powder Metallurgy Industry, 2022, 32(5), 80 (in Chinese). 周军晖, 黄聪. 粉末冶金工业, 2022, 32(5), 80. 64 Zhao Q. Effect of particles in-flight properties on microstructure and pro-perties of plasma sprayed yttria-stabilized-zirconia coating. Master's Thesis, Hebei University of Technology, China, 2020 (in Chinese). 赵钦. 飞行粒子特性对等离子喷涂Y2O3稳定ZrO2涂层组织结构及性能的影响. 硕士学位论文, 河北工业大学, 2020. 65 Cui J, Guo Y Z, Pang M, et al. Laser & Optoelectronics Progress, 2020, 57(15), 142 (in Chinese). 崔静, 郭玉珠, 庞铭, 等. 激光与光电子学进展, 2020, 57(15), 142. 66 Zhang J, Yang J, Zhu L T, et al. Journal of the Chinese Ceramic Society, 2012, 40(9), 1356. 67 Zhang J, Niu Y H. Ordnance Material Science and Engineering, 2018, 41(4), 76 (in Chinese). 张建, 牛永辉. 兵器材料科学与工程, 2018, 41(4), 76. 68 Yang Z K, Wang H J, Liu M, et al. Special Casting & Nonferrous Alloys, 2015(11), 1205 (in Chinese). 杨振凯, 王海军, 刘明, 等. 特种铸造及有色合金, 2015(11), 1205. 69 Cao Y. Study on the organization and properties of supersonic plasma sprayed NiCr-mullite coatings. Master's Thesis, Lanzhou University of Technology, China, 2020 (in Chinese). 曹洋. 超音速等离子喷涂镍铬-莫来石涂层组织及性能研究. 硕士学位论文, 兰州理工大学, 2020. 70 Cao Y, Zhang P L, Niu X M, et al. Powder Metallurgy Technology, 2021, 39(2), 135 (in Chinese). 曹洋, 张鹏林, 牛显明, 等. 粉末冶金技术, 2021, 39(2), 135. 71 Gu L S, Li G L, Wang H D, et al. Materials Science and Engineering of Powder Metallurgy, 2013, 18(4), 560 (in Chinese). 顾林松, 李国禄, 王海斗, 等. 粉末冶金材料科学与工程, 2013, 18(4), 560. 72 Liu X, Zhou X L, Chen X M, et al. Physical Testing and Chemical Analysis (Part A: Physical Testing), 2014(11), 785 (in Chinese). 刘娴, 周夏凉, 陈小明, 等. 理化检验(物理分册), 2014(11), 785. 73 Yu F L, Bai Y, Xie H, et al. Rare Metal Materials and Engineering, 2018, 47(6), 1884 (in Chinese). 于方丽, 白宇, 谢辉, 等. 稀有金属材料与工程, 2018, 47(6), 1884. 74 Gu S, Zhang S, Liu F, et al. Applied Surface Science, 2018, 455, 849. 75 Xu Y H, Li Q. Chinese Surface Engineering, 2010(1), 51 (in Chinese). 许艳华, 李强. 中国表面工程, 2010(1), 51. 76 Meng X M, Ye W P, Cheng X D, et al. Materials Science and Technology, 2013, 21(3), 143 (in Chinese). 孟晓明, 叶卫平, 程旭东, 等. 材料科学与工艺, 2013, 21(3), 143. 77 Wang C, Wang Y, Fan S, et al. Journal of Alloys and Compounds, 2015, 649, 1182. 78 Li J. Bio-ceramics coatings prepared by suspension plasma spraying. Master's Thesis, Huazhong University of Science and Technology, China, 2013 (in Chinese). 李佳. 悬浮液等离子喷涂备生物陶瓷涂层. 硕士学位论文, 华中科技大学, 2013. 79 Zhou S J, Bai Y, Ma W, et al. Journal of Thermal Spray Technology, 2019, 28(5), 1025. 80 Zhou S J, Bai Y, Chi B X, et al. Surface Technology, 2019, 48(7), 340 (in Chinese). 周生健, 白玉, 迟柏祥, 等. 表面技术, 2019, 48(7), 340. 81 Deng X J, Lu G W. Vacuum, 1996(1), 35 (in Chinese). 邓新建, 卢观威. 真空, 1996(1), 35 82 Deng X J, Zhang D H. Surface Technology, 1996(4), 33(in Chinese). 邓新建, 张东辉. 表面技术, 1996(4), 33. 83 Zhu X Y, Luo L M, Li P, et al. Rare Metal Materials and Engineering, 2015, 44(10), 2405. 84 Zheng X B, Ji H, Huang J Q, et al. Journal of Inorganic Materials, 2005(6), 231 (in Chinese). 郑学斌, 季珩, 黄静琪, 等. 无机材料学报, 2005(6), 231. 85 Chen L, Li K H. Research on Iron and Steel, 1991(5), 58 (in Chinese). 陈亮, 李克厚. 钢铁研究, 1991(5), 58. 86 Chen X, Ji G C. Hot Working Technology, 2012(4), 103 (in Chinese). 陈枭, 纪岗昌. 热加工工艺, 2012(4), 103. 87 Chen X, Zhang R Y, Li F. Journal of Synthetic Crystals, 2011, 40(1), 266 (in Chinese). 陈枭, 张仁元, 李风. 人工晶体学报, 2011, 40(1), 266. 88 Chen X, Ji G C, Wang H T. Materials Reports, 2012, 26(10), 97(in Chinese) . 陈枭, 纪岗昌, 王洪涛. 材料导报, 2012, 26(10), 97. |
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