PSI - Issue 59
Kozulin S. et al. / Procedia Structural Integrity 59 (2024) 391–398
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S. Kozulin et al. / StructuralIntegrityProcedia 00 (2019) 000 – 000 components. The long-term strength of welded joints under conditions of asymmetric alternating loading (- 40…+11 MPa) is not less than 10 7 cycles. References Boganov A. I.(1965). Rotary kilns of cement industry.Ed. By Р.V. Levchenko, K. A. Dolganova. Moscow:Mashinostroenie. Dennis D., Harwig P., Fallara V et al. (1999). A Narrow-Groove Process Proves Robust in a Massive Repair. The narrow-groove submerged arc welding process is used to repair a kiln tire. WeldingJ., January, 45-48. Filchenkov, D.I., Kozulin, M.G. Electroslag welding method. USSR author’s cert. 721288.Publ. 1980. Kozulin M.G., 2004. Technologies for repairing cracks in tires of rotating kilns: collection of articles. 2004. Reports of the All-Rus. Scientific and Technical Conference. Perm. T. 3. P. 133-138. Kozulin S., Lychko I., Maydanchuk T., Ilyushenko V., Lukianchenko E., 2022. Influence of thermal cycles of repair electroslag welding on the structure and mechanical properties of joints of cast medium carbon steels. Procedia Structural Integrity, 36, pp. 247 – 253. DOI: 10.1016/j.prostr.2022.01.031. Kozulin S.M., 2011.Selection of the groove shape for repair of through cracks by multilayer electroslag welding. The Paton welding Journal 3, 32-35. Kozulin S.M., Lychko I.I., 2011.Deformations of welded joints in multilayer electroslag welding. The Paton welding Journal 1, 23-27. Kozulin S.M., Lychko I.I., Kozulin M.G., 2007.Methodsofreconditioninrotarykilns (Review). The Paton Welding Journal 10, 33 – 39. Kozulin S.M., Lychko I.I., Kozulin M.G., 2010. Increase of resistance of welds to formation of crystalline cracks in repair of bands of kiln furnaces using electroslag welding. The Paton welding Journal 1, 32-34. Kozulin S.M., Lychko I.I., Podyma G.S. (2021). Electroslag technologies for repair of through-thickness cracks in thick parts. The Paton welding Journal 10, 33-37. Kukakin P. A., 1968.Welding of cracks on the bandage of a rotating operating furnace of 4.5×170 m. Welding production 12 , 33-34. Nasedkin, I.V. (1980) Structures of rotary furnace bands.Tsement, 5, 23. Panteleenko, F.I., Lylyakin, V.P., Ivanov, V.P., Konstantinov, V.M. (2003) Restoration of machine parts: Refer. book. Ed. by V.P. Ivanov. Moscow, Mashinostroenie. Paton, B.,1980. Electroslag welding and surfacing. Moscow: Mashinostroenie. Prohorov N.N.,1962.Technological strength of metals during crystallization during welding. Svarochnoe proizvodstvo 4, 1-5. Shcherbakov, Yu.V.,Kashfullin, A.M. (2018) Current methods of restoration and strengthening of parts: Tutorial. Perm, Prokrost. Spec. 22-170-87. Rotary kiln bands. 1987. M.: TsNIITEstroymash., 27 p. Sushchuk-Slyusarenko I. I., Vergela A. G., Shevchenko N. T., 1969.Electroslag welding of cracks. Automatic welding 4, 72-73. Sushchuk-Slyusarenko, I.I., Lychko, I.I., Kozulin, M.G., Semenov, V.M. (1989) Electroslag welding and surfacing in repair works. Kiev: Naukova Dumka. Syshchuk- Slusarenko I.I., Lychko І.I., Semenov V.M., 1981.Basic and welding materials for electroslag welding. Kyiv. Naykova dymka, 11 2 p. Taldykin, Yu.A.,Porukevich, V.M. (1977).Experience in welding cracks in bandages of tubular rotary furnaces. Welding Production 10, P.40. Yushchenko K.A., Kozulin S.M., Lychko I.I., Kozulin M.G., 2014. Joining of thick metal by multi-pass electroslag welding. The Paton Welding Journal 9, 30-33. Yushchenko K.A.,Lychko I.I., Syshchuk-Slusarenko I.I., 1999.Effective techniques of electroslag welding and prospects for their application in welding production.Welding and surfacing reviews. Edited by B. E. Paton, OPA (Overseas Publishers Assosiation) 12, 1-108.
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