Research of technology for repair of heat exchangers of nuclear power plants by laser welding

被引:2
作者
Bernatskyi A. [1 ]
Sydorets V. [1 ]
Berdnikova O. [1 ]
Krivtsun I. [1 ]
Kushnarova O. [1 ]
机构
[1] E.O. Paton Electric Welding Institute of the NAS of Ukraine, 11, Kazymyra Malevycha str., Kyiv
关键词
Defects; Laser welding; Nuclear power plant; Quality; Repair; Stainless steel; Steam generator;
D O I
10.4028/www.scientific.net/SSP.313.94
中图分类号
学科分类号
摘要
Extending the lifetime of energy facilities is extremely important today. This is especially true of nuclear power plants, the closure (or modernization) of which poses enormous financial and environmental problems. High-quality repair of reactors can significantly extend their service life. One of the critical parts is heat exchangers, the tubes of which quite often fail. Sealing, as a type of repair of heat exchanger tubes by the plugs, is promising provided that the joint quality is high. Practical experience in the use of welding to solve this problem has shown the need to search technological solutions associated with increasing the depth of penetration and reducing the area of thermal effect. The aim of the work was to develop a highly efficient technology for repair and extension of service life of heat exchangers of nuclear power plants based on the results of studying the technological features of laser welding of joints of dissimilar austenitic steels AISI 321 and AISI 316Ti in the vertical spatial position. Based on the results of the analysis of mechanical test data, visual and radiographic control, impermeability tests and metallographic studies of welded joints, the appropriate modes of laser welding of plugs have been determined. The principal causes of defects during laser welding of annular welded joints of dissimilar stainless steels are determined and techniques for their elimination and prevention of their formation are proposed. Based on the results of the research, technological recommendations for laser welding of plugs in the heat exchange tube of the collector are formulated, which significantly improves the technology of repair of steam generators of nuclear power plants and extends the service life of reactors. © 2021 Trans Tech Publications Ltd, Switzerland.
引用
收藏
页码:94 / 105
页数:11
相关论文
共 56 条
[31]  
Razmyshlyaev A.D., Mironova M.V., Deli A.A., Speed of metal flows in the pool in arc surfacing in a longitudinal magnetic field, Weld. Int, 24, 8, pp. 627-630, (2010)
[32]  
Il'Yaschenko D.P., Chinakhov D.A., Gotovschik Y.M., Investigating the influence of the power supply type upon the properties of the weld joints under manual arc welding, Adv. Mater. Res, 1040, pp. 837-844, (2014)
[33]  
Akhonin S.V., Mishchenko R.N., Petrichenko I.K., Investigation of the weldability of titanium alloys produced by different methods of melting, Mater. Sci, 42, pp. 323-329, (2006)
[34]  
Razmyshlyayev A.D., Mironova M.V., Yarmonov S.V., Vydmysh P.A., The speed of flows in the pool in arc welding in a transverse magnetic field, Weld. Int, 29, 4, pp. 296-300, (2015)
[35]  
Chinakhov D.A., Grigorieva E.G., Mayorova E.I., Kartsev D.S., The influence of shielding gas flow rate on the transfer frequency of electrode metals drops, IOP Conf. Series: Materials Science and Engineering, 142, (2016)
[36]  
Vlasov A.F., Makarenko N.A., Kushchiy A.M., Using exothermic mixtures in manual arc welding and electroslag processes, Weld. Int, 31, 7, pp. 565-570, (2017)
[37]  
Razmyshlyaev A.D., Ahieieva M.V., Features of arc surfacing process in a longitudinal magnetic field, Appl. Mech. Mater, 682, pp. 313-318, (2014)
[38]  
Markashova L., Berdnikova O., Bernatskyi A., Iurzhenko M., Sydorets V., Physical and mechanical properties of high-strength steel joints produced by laser welding, 2017 IEEE International Young Scientists Forum on Applied Physics and Engineering (YSF), Lviv, pp. 88-91, (2017)
[39]  
Katayama S., Handbook of laser welding technologies, (2013)
[40]  
Kurc-Lisiecka A., Lisiecki A., Laser welding of the new grade of advanced high-strength steel DOMEX 960, Materiali in tehnologije / Materials and technology, 51, 7, pp. 199-204, (2017)