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Research Article

Improvement of technology for repair of ore-bucket unloader metal structure working under cyclic loading

ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon
Pages 380-399 | Accepted 02 Aug 2020, Published online: 13 Aug 2020

References

  • Karpenko VM, Granovskii AV, Gavrish PA. Plasma-arc spray gun for surfacing parts of complex form. Chem Petrol Eng. 1989;25(8):474–475.
  • Olabi AG, Hashmi MSJ. Stress relief procedures for low carbon steel (1020) welded components. J Mater Process Technol. 1996;56(1–4):552–562.
  • Skaloud M, Roberts TM. Fatigue crack initiation and propagation in slender webs breathing under repeated loading. J Constr Steel Res. 1998;46(1–3):417–419.
  • Ismail MY, Hashmi MSJ. Empirical study into quality initiatives implementation order. Total Quality Manage. 1998;9(4–5):128–129.
  • Kuwamura H, Hanzawa M. Inspection and repair of fatigue cracks in crane runway girders. J Struct Eng-ASCE. 1987 Nov;113(11):2181–2194.
  • Chigarev VV, Serov IV, Gavrish PA, et al. Study of the interaction of bath components in welding parts of metallurgical equipment [Issledovanie vzaimodeystviya komponentov vanny pri svarke detaley metallurgicheskogo oborudovaniya]. Protection of metallurgical machines from breakdowns [Zakhyst metalurhiinykh mashyn vid polomok]. 2005;8:214–223. [in Russian]. [Accessed 6 Aug 2020] Available from: http://eir.pstu.edu/handle/123456789/4790
  • Shepotko VP, Gavrish РA. Improvement of the technology of repair ore-span beams grab cranes [Sovershenstvovanie tekhnologii remonta proletnykh balok rudno-greyfernykh peregruzhateley]. Herald of the DSEA. 2011;4(25):245–250. in Russian]. Available from: http://www.dgma.donetsk.ua/science_public/ddma/herald_4(25)_2011/article/11SVPBGC.pdf.
  • Gavrish PA. Features methods of the repair metal structures by welding [Osoblyvosti metodiv remontu metalokonstruktsiy zvaryuvannyam]. Kramatorsk: Donbass State Engineering Academy; 2020. (in Ukrainian).
  • Lant T, Robinson DL, Spafford B, et al. Review of weld repair procedures for low alloy steels designed to minimise the risk of future cracking. Int J Pressure Vessels Pip. 2001 Dec;78(11–12):813–818.
  • Grote К-G, Postnikov J, Makarenko N, et al. Die bewertungsmethodik der bauausführung der untergleiszone der hauptträger der verladebrücke. Herald of the DSEA. 2012;3(28):110–113. Available from: http://www.dgma.donetsk.ua/science_public/ddma/Herald_3(28)_2012/article/12gkguhv.pdf
  • Schepotko V, Gavrish P, Makarenko N, et al. Die bewertungsmethodik der konstruktiver ausführungen von maschinenelementen. European Science and Technology. Materials of the VI international research and practice conference. 2013 Dec 27-28; II:307–315; Munich, Germany
  • Shepotko VP, Gavrish PA. Analysis of the structural execution of main beams of the loading cranes. Eastern-European J Enterp Technol. 2013;2(7(62)):64–66.
  • Ismail MY, Baradie M, Hashmi MSJ. Quality management in the manufacturing industry: practice vs performance. Comput Ind Eng. 1998;35(3–4):519–522.
  • Grigorov OV, Konoplev V Individual fatigue limits definition using modernized Weibull equation parameters. Annals of the University of Petrosani, mechanical engineering. 2011;13:51–54. Available from: https://www.upet.ro/annals/mechanical/2011.php
  • Sarwar M, Haider J, Persson M, et al. Performance evaluation of bandsaw using scientific method when cutting tool steels. In: Hinduja S, Li L (eds) Proceedings of the 37th International MATADOR 2012 Conference. School of CEIS, Northumbria University, Newcastle-upon-Tyne, NE1 8ST, United Kingdom. Springer, London; 2013. p. 209–212. doi:10.1007/978-1-4471-4480-9_5.
  • Gavrish PA, Shepotko VP. Effect of design features of welded components of cargo handling equipment on its serviceability [Vliyanie konstruktivnykh osobennostey svarnykh uzlov peregruzhatelya na ego rabotosposobnost’]. Avtomaticheskaya Svarka. 2013;12(727):51–54. [in Russian]. Available from: http://dspace.nbuv.gov.ua/handle/123456789/103168.
  • McCarthy P, Soderberg E, Dix A Wind damage to dockside cranes: recent failures and recommendations. TCLEE 2009: lifeline earthquake engineering in a multihazard environment. 2009;357:50.
  • Gavrish РA, Shepotko VP, Martynovska EV. Fatigue damages of a crane metalwork [Ustalostnye povrezhdeniya kranovykh metallokonstruktsiy]. Herald of the DSEA. 2013;1(30):38–41. [in Russian]. Available from: http://www.dgma.donetsk.ua/science_public/ddma/Herald_1(30)_2013/article/13gpadcm.pdf.
  • Rossini NS, Dassisti M, Benyounis KY, et al. Methods of measuring residual stresses in components. Mater Des. 2012 Mar;35:572–588.
  • Wang X, Xiao H. Research on analysis and repairing for metal structure cracks of portal crane. Adv Mater Res. 2012;443–444:970–973.
  • Chybihski M, Farkas J, Garstecki A, et al. 3.1 - optimization of steel beams and columns for variable Rib configuration. In: Jármai K, Farkas J, editors. Design, fabrication and economy of welded structures. Chichester: Woodhead Publishing; 2008. p. 113–118. DOI:10.1533/9781782420484.3.113.
  • Gavrish PA Improving the technology of welding copper to steel [Sovershenstvovanie tekhnologii svarki medi so stal’yu]. Kramatorsk: Donbass state engineering academy; 2014 [in Russian].
  • Gavrish PA, Shepotko VP, Martynovskaya EV. Technological features of repairing defective portions of hoisting machines [Tekhnologicheskie osobennosti remonta defektnykh uchastkov gruzopod”emnykh mashin]. Herald of the DSEA. 2015;3(36):91–95. [in Russian]. Available from: http://www.dgma.donetsk.ua/science_public/ddma/Herald_3(36)_2015/article/18.pdf.
  • Perig AV, Stadnik AN, Deriglazov AI, et al. 3 DOF spherical pendulum oscillations with a uniform slewing pivot center and a small angle assumption. Shock Vib. 2014;203709. DOI:10.1155/2014/203709
  • Gavrish PA, Shepotko VP. Influence of design features of reloader welded assemblies on its performance. Paton Weld J. 2013;12:48–50. Available from: https://patonpublishinghouse.com/tpwj/pdf/2013/pdfarticles/12/10.pdf
  • Grote К-G, Posnikov J, Makarenko N, et al. Research of the causes of fatigue damages of metal structure welded assemblies of loading cranes “Takraf”. Herald of the DSEA. 2016;2(38):101–106. Available from: http://www.dgma.donetsk.ua/science_public/ddma/Herald_2(38)_2016/article/21.pdf
  • Chigarev V, Gavrish P, Makarenko N. Quality control methods [Metody kontrolya kachestva]. Saarbrücken: Palmarium Academic Publishing; 2017. [in Russian]. Available from: http://eir.pstu.edu/handle/123456789/24751.
  • Tong X, Tuan CY, Yang J, et al. Fatigue strength of end-coped crane runway girders. J Struct Eng. 2007 Dec;133(12):1783–1791.
  • Hectors K, De Waele W, Loccufier M, et al. A numerical framework for fatigue lifetime prediction of complex welded structures. Frat ed Integrità Strutt. 2019 Dec 14;14;(51): 552–566. DOI:10.3221/IGF-ESIS.51.42.
  • Caglayan O, Ozakgul K, Tezer O, et al. Fatigue life prediction of existing crane runway girders. J Constr Steel Res. 2010 Oct;66(10):1164–1173.
  • Gaska D, Pypno C. Strength and elastic stability of cranes in aspect of new and old design standards. Mechanika. 2011;17(3):226–231.
  • Yifei T, Wei Y, Zhen Y, et al. Research on multidisciplinary optimization design of bridge crane. Math Probl Eng. 2013;2013(763545). DOI:10.1155/2013/763545
  • Perig AV, Stadnik AN, Deriglazov AI. Spherical pendulum small oscillations for slewing crane motion. Sci World J. 2014;451804. DOI:10.1155/2014/451804
  • Chigarev V, Gavrish P, Makarenko N. Evaluation of welding quality and related processes [Otsinka yakosti zvaryuvannya ta sporidnenykh protsesiv]. Riga: LAP LAMBERT Academic Publishing [in Ukrainian]. 2018. Available from: http://eir.pstu.edu/handle/123456789/24755.
  • Kou S. Welding Metallurgy. New York: John Wiley and Sons; 2002. DOI:10.1002/0471434027.
  • Gavrish PA. The preliminary heating at welding copper and steel. Am J Mater Eng Technol. 2013 Sep 10;1(3):46–48.
  • Pelayo F, Rodriguez C, Canteli AF. Failure and repair analysis of a runway beam: influence of the standard applied to lifetime prediction. Eng Fail Anal. 2015 Oct;56:89–97.
  • Tanasković D, Tatić U, Đorđević B, et al. The effect of cracks on stress state in crane wheel hard-surface under contact loading. Teh Vjesn. 2017;24(Supplement1):169–175.
  • Michigan department of transportation. Field manual for structural welding. MDOT; 2017. 74 p. Available from: https://www.michigan.gov/documents/mdot/MDOT_2017_Structural_Welding_Manual_556963_7.pdf
  • Grigorov O, Druzhynin E, Strizhak V, et al. Numerical simulation of the dynamics of the system “trolley – load – carrying rope” in a cable crane. East-Eur J Enterp Technol. 2018 May 29;3(7(93)):6–12.[Accessed 6 Aug 2020].
  • Kostikov AA, Perig AV, Larichkin OV, et al. Research into payload swaying reduction through cable length manipulation during boom crane motion. FME Trans. 2019;47(3):464–476.
  • Lai -H-H, Wu W. Practical examination of the welding residual stress in view of low-carbon steel welds. J Mater Res Technol. 2020;9(3):2717–2726.
  • Gavrish PA, Perig AV. Improvement of the heat state in welding copper with steel. Adv Mater Process Technol. Forthcoming 2020 Jun;26:1–15.
  • Gavrish PA, Pyts YE, Pyts VY. Strain hardening edges at the welding copper with steel [Deformatsionnoe uprochnenie kromok pri svarke medi so stal’yu]. Mater Working Pressure [Obrobka Materialiv Tyskom]. 2013;3(36):150–153. [in Russian]. Available from: http://www.dgma.donetsk.ua/science_public/omd/omd_3(36)_2013/article/13gpacws.pdf.
  • Arabasi S, Masoud Z. Simultaneous travel and hoist maneuver input shaping control using frequency modulation. Shock Vib. 2017;5703820. DOI:10.1155/2017/5703820
  • Gavrish РA, Ermakova SA. Features of the formation defects the ore-grab loading crane TAKRAF. Herald of the DSEA. 2019 Oct 1;2(46):93–96.
  • Matarneh ME, Gharaibeh NS, Chigarev VV, et al. Reduction of copper to steel weld ductility for parts in metallurgical equipment. J Mech Eng. 2020;17(1):103–114. Available from: https://jmeche.uitm.edu.my/wp-content/uploads/2020/04/8_RI_17_1_P19_27.pdf
  • Lippold JC. Welding metallurgy and weldability. Hoboken: John Wiley and Sons; 2015. DOI:10.1002/9781118960332.
  • Kostikov AA, Perig AV, Lozun RR. Simulation-assisted teaching of graduate students in transport: A case study of the application of acausal freeware JModelica.org to solution of Sakawa’s open-loop optimal control problem for payload motion during crane boom rotation. Int J Mech Eng Educ. 2017;45(1):3–27.
  • Kostikov AA, Perig AV, Mikhieienko DY, et al. Numerical JModelica.org-based approach to a simulation of Coriolis effects on guided boom-driven payload swaying during non-uniform rotary crane boom slewing. J Braz Soc Mech Sci Eng. 2017 Mar;39(3):737–756.
  • Berezhnaya EV, Kuznetsov VD, Kassov VD, et al. Investigation of microplastic deformation of metal deposited by electric resistance method. Avtomaticheskaya Svarka. 2017;7:24–28. in Russian.
  • Gavrish PA, Berezshnaya OV, Sobolev-Butovchenko EA. Gas-thermal sputtering of an covering against friction details of the TAKRAF crane overloader [Gazotermicheskoe napylenie antifriktsionnogo pokrytiya detaley peregruzhatelya TAKRAF]. Sci Herald DSEA. 2016;2(20E):49–54. [in Russian]. Available from: http://www.dgma.donetsk.ua/science_public/science_vesnik/%E2%84%962(20%D0%95)_2016/article/10.pdf.
  • Sarkar S, Baranwal RK, Mukherjee A, et al. Optimisation & minimisation of corrosion rate of electroless Ni-Co-P coating. Adv Mater Process Technol. 2020 Jul 2;6(3):487–508.
  • Bielyatynskyi AO, Pershakov VM, ОI Р, et al. 2013. Metal structures. Metals and welding in construction. Kyiv: National Aviation University. Available from: https://er.nau.edu.ua/handle/NAU/11959
  • Dobronosov Y, Gavrish PA. Investigation of the stress–strain and kinematic state of metal in rolling welded joints between copper and steel. Weld Int. 2017;31(11):874–878.
  • Xue F, Xu Z, Weng F. Crane metal structure crack monitoring method. IOP Conf Ser Mater Sci Eng. 2018;394(3):032062.
  • Paton BE, Zamkov VN, Prilutsky VP, et al. Contraction of the welding arc caused by the flux in tungsten-electrode argon-arc welding. Paton Weld J. 2000;1:5–11. Available from: http://www1.nas.gov.ua/pwj/e00no01.html
  • Chigarev VV, Gavrin PA, Gribkov EP. Investigation of the process of drawing flux-cored wire for welding copper to steel. Weld Int. 2012;26(9):718–722.
  • Perig AV, Kostikov AA, Skyrtach VM, et al. Application of JModelica.org to teaching the fundamentals of dynamics of foucault pendulum-like guided systems to engineering students. Inf Technol Learn Tools. 2017;62(6):151–178.
  • Chigarev VV, Gavrish PA, Gribkov EP. Improving the technological conditions of drawing flux-cored welding wires. Weld Int. 2014;28(1):59–61.
  • China Classification Society. Rules for Materials and Welding. Bejing: CCS; 2018. 297 p. Available from:  https://www.ccs.org.cn/ccswzen/font/fontAction!downloadArticleFile.do?attachId=4028e3d6660ffd5f01692ca185fc031b [Accessed 6 Aug 2020].
  • Dong Q, Xu G, Xin Y. Fatigue residual life prediction of casting crane under track defect model. J Adv Mech Des Syst Manuf. 2018;12(4):18–00152.
  • Bhardwaj N, Narayanan RG, Dixit US, et al. Recent developments in friction stir welding and resulting industrial practices. Adv Mater Process Technol. 2019;5(3):461–496.
  • Perig AV, Stadnik AN, Kostikov AA, et al. Research into 2D dynamics and control of small oscillations of a cross-beam during transportation by two overhead cranes. Shock Vib. 2017;9605657. DOI:10.1155/2017/9605657
  • Rykaluk K, Marcinczak K, Rowinski S. Fatigue hazards in welded plate crane runway girders – locations, causes and calculations. Arch Civ Mech Eng. 2018 Jan;18(1):69–82.
  • Chigarev VV, Belik AG, Gribkov EP, et al. A mathematical model of the process of rolling flux-cored tapes. Weld Int. 2015;29(1):70–74.
  • Perig AV. How to teach students to make a simple experimental visualization of the macroscopic rotational modes of large deformations during pressure forming. J Mater Educ. 2017;39(5–6):193–208. Available from: https://icme.unt.edu/sites/default/files/vol.39issue5-62017.pdf
  • Svyetlichnyy DS, Perig AV, Lach L, et al. Edification in creation of Lattice Boltzmann models for materials science students. Int J Contin Eng Educ Life-Long Learn. 2019;29(3):151–181.
  • Perig AV. Method for teaching students to make a simple geometric estimation of the macroscopic rotational modes of large deformations during pressure forming. Int J Contin Eng Educ Life-Long Learn. 2019;29(3):182–191.
  • Perig AV, Golodenko NN, Lapchenko OV, et al. Recent postdigital transformations of undergraduate learning processes in the study of multidisciplinary materials science. Int J Contin Eng Educ Life-Long Learn. 2019;29(3):251–291.

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