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Influence of welding time on quality of the friction welded joint of two dissimilar steels

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
There are several factors that influence the friction welding (FW) process, i.e. the quality of the welded joint, like the welding time, the contact pressure, the compacting pressure, the friction speed etc. The joining process is additionally complicated if the two different materials are to be welded to each other. The subject of research, presented in this paper, is the welding time of the FW process, since the level of axial and radial plastic deformation of the welded pieces and shortening of the welded part depend mainly on the welding time. The paper first presents some theoretical basics of the FW process and then, in the experimental part, the influence of the process duration is investigated. The two materials that the experimental samples were made of are the high-speed steel and the steel for tempering.
Rocznik
Tom
Strony
1--11
Opis fizyczny
Bibliogr. 11 poz., rys., tab.
Twórcy
autor
  • Faculty of Engineering, University of Kragujevac, Serbia
autor
  • Faculty of Engineering, University of Kragujevac, Serbia
autor
  • Faculty of Engineering, University of Kragujevac, Serbia
autor
  • Research Center, University of Žilina, Slovakia and Faculty of Engineering, University of Kragujevac, Serbia
autor
  • Research Center, University of Žilina, Slovakia
Bibliografia
  • 1. ĆIRIĆ R. 1986 Contribution to analysis of properties of the friction welded joints of Č7680 with Č1730. Master Thesis, Faculty of Mechanical Engineering, Belgrade, Serbia.
  • 2. ĆIRIĆ R. 2001 Structural changes in the vicinity of the welded joint of steels. "Welding and Welded Structures". 1-2, pp. 31-36.
  • 3. DENIN G. 1989 Optimization of setting values for friction welding with continuous drive. Specialized information from KUKA. Augsburg, (In German).
  • 4. RATKOVIĆ N. 2009 Modeling of the machine parts of various forms of the welding process, Doctoral dissertation, Faculty of Mechanical Engineering, Kragujevac, Serbia.
  • 5. RATKOVIĆ N., SEDMAK A., JOVANOVIĆ M., LAZIĆ V., NIKOLIĆ R., KRSTIĆ B. 2009a Physical and metallurgical changes during the friction welding of the high-speed steel and the tempering steel. "Tehnički vjesnik-Technical Gazette". 16, pp. 27-31.
  • 6. RATKOVIĆ N., SEDMAK A., JOVANOVIĆ M., LAZIĆ V., NIKOLIĆ R., KRSTIĆ B. 2009b Quality analysis of Al-Cu joint realized by friction welding. "Tehnički vjesnik-Technical Gazette". 16(3), pp. 3-7.
  • 7. RATKOVIĆ N., NIKOLIĆ R., SAMARDŽIĆ I. 2014 Structural, chemical and deformation changes in friction welded joint of dissimilar steels. "Metallurgy". 53(4), pp. 513-516.
  • 8. RATKOVIĆ N., ARSIĆ D., LAZIĆ V., NIKOLIĆ R., SEDMAK A. 2015 Influence of friction welding parameters on hardness, microstructure and mechanical properties of the Al-Cu joint. Proc. 7th International Scientific and Expert Conference TEAM 2015. Belgrade, 15-16 October 2015, pp. 359-363.
  • 9. RATKOVIĆ N., ARSIĆ D., LAZIĆ V., NIKOLIĆ R., HADZIMA B., PALČEK P., Sedmak A. 2017 Influence of friction welding parameters on properties of the Al-Cu joint, "FME Transactions", 45(1), pp. 165-171.
  • 10. SAHIN M. 2005 Joining with Friction Welding of high-speed and medium– carbon steel. "The International Journal of Advanced Manufacturing Technology". 49, pp. 527-534.
  • 11. SEREGIN A. 1986 Degree of plastic deformation in friction welding of metals. "SP" 8. (In Russian).
Uwagi
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-7b6c3b14-0919-44d5-8627-64e657f4d2fd
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