Research progress of surface modification on coal-fired power plant boiler tubes

被引:0
作者
Zhou Y. [1 ]
Lu J. [1 ]
Gu Y. [1 ]
机构
[1] National Energy R&D Center of Clean and High-efficiency Fossil-fired Power Generation Technology, Xi'an Thermal Power Research Institute Co., Ltd, Xi'an, 710032, Shaanxi Province
来源
Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering | 2017年 / 37卷 / 01期
关键词
Boiler pipe; Coal-fired power plant; Fireside corrosion; Steam oxidation; Surface modification;
D O I
10.13334/j.0258-8013.pcsee.161524
中图分类号
学科分类号
摘要
Surface modification is an effective way to improve the corrosion resistant performance of the materials, and the optimized surface modification on coal-fired power plant boiler heating surface has a significant effect to improve the ash/gas corrosion and steam oxidation. This paper summarized the research progress of surface modification technology of boiler tube's fireside and steam side. According to the corrosion characteristics of coal-fired power plant boiler, the conventional surface modification technology were focused on discussing, such as diffusion coating, overlay coating, and shot peening, etc. Furtherly, the direction of the research of surface modification technology in power plant boiler protection was indicated, several issues yet to be elucidated were suggested as well. © 2017 Chin. Soc. for Elec. Eng.
引用
收藏
页码:149 / 160
页数:11
相关论文
共 58 条
[1]  
Gu W., Research on high temperature corrosion of 700℃ ultra supercritical boiler superheater, (2015)
[2]  
Naganuma H., Ikeda N., Ito T., Et al., Control of ash deposition in solid fuel fired boiler, Fuel Processing Technology, 105, pp. 77-81, (2013)
[3]  
Zhao X., Lu J., Yuan Y., Et al., Analysis of supercritical carbon dioxide brayton cycle and candidate materials of key hot components for power plants, Proceedings of the CSEE, 36, 1, pp. 154-162, (2016)
[4]  
Li T., Li W., Li Y., Et al., Performance of HVOF NiCr cermets coating against high temperature sulfur corrosion and erosion, Proceedings of the CSEE, 32, 20, pp. 120-125, (2012)
[5]  
Senthilkumar V., Thiyagarajan B., Duraiselvam M., Et al., Effect of thermal cycle on Ni-Cr based nanostructured thermal spray coating in boiler tubes, Transactions of Nonferrous Metals Society of China, 25, 5, pp. 1533-1542, (2015)
[6]  
Kumar M., Singh H., Singh N., Et al., Development of nano-crystalline cold sprayed Ni-20Cr coatings for high temperature oxidation resistance, Surface and Coatings Technology, 266, pp. 122-133, (2015)
[7]  
Sidhu B.S., Prakash S., Nickel-chromium plasma spray coatings: a way to enhance degradation resistance of boiler tube steels in boiler environment, Journal of Thermal Spray Technology, 15, 1, pp. 131-140, (2006)
[8]  
Bi J., Sun H., Ni L., Et al., Study on high-temperature oxidation resistance property of Fe/Cr coating, Failire Analysis and Prevention, 2, 3, pp. 12-15, (2007)
[9]  
Branagan D.J., Breitsameter M., Meacham B.E., Et al., High-performance nanoscale composite coatings for boiler applications, Journal of Thermal Spray Technology, 14, 2, pp. 196-204, (2005)
[10]  
Yan S., Jie X., Zhang Y., Et al., Study on microstructure and properties of laser cladding Co-Cr alloy coating, Hot Working Technology, 41, 8, pp. 162-164, (2012)