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Mechanical and microstructural properties of EN AW-6060 aluminum alloy joints produced by friction stir welding

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In the study, the mechanical and microstructural properties of friction stir welded EN AW-6060 Aluminum Alloy plates were investigated. The friction stir welding (FSW) was conducted at tool rotational speeds of 900, 1250, and 1500 rpm and at welding speeds of 100, 150 and 180 mm/min. The effect of the tool rotational and welding speeds such properties was studied. The mechanical properties of the joints were evaluated by means of micro-hardness (HV) and tensile tests at room temperature. The tensile properties of the friction stir welded tensile specimens depend significantly on both the tool rotational and welding speeds. The microstructural evolution of the weld zone was analysed by optical observations of the weld zones.
Rocznik
Strony
475--478
Opis fizyczny
Bibliogr. 9 poz., rys., tab., wykr., il., fot.
Twórcy
  • Sakarya University, Akyazi Vocational School, Department of Machine Technology, Akyazı/Sakarya, Turkey
Bibliografia
  • [1] A.M. Gaafer, T.S. Mahmoud, and E.H. Mansour, “Microstructural and mechanical characteristics of AA7020-O Al plates joined by friction stir welding”, Materials Science and Engineering A 527, 7424-7429 (2010).
  • [2] P.M.G.P. Moreira, T. Santos, S.M.O. Tavares, V. Richter- Trummer, P. Vilac¸a, and P.M.S.T. de Castro, “Mechanical and metallurgical characterization of friction stir welding joints of AA6061-T6 with AA6082-T6”, Materials and Design 30, 180-187 (2009).
  • [3] Z.L. Hu, S.J. Yuan, X.S. Wang, G. Liu, and H.J. Liu, “Microstructure and mechanical properties of Al-Cu-Mg alloy tube fabricated by friction stir welding and tube spinning”, Scripta Materialia 66 (7), 427-430 (2012).
  • [4] M. Movahedi, A.H. Kokabi, S.M. Seyed Reihani, and H. Najafi, “Mechanical and microstructural characterization of Al-5083/St-12 lap joints made by friction stir welding”, Procedia Engineering 10, 3297-3303 (2011).
  • [5] P. Cavaliere, A. De Santis, F. Panella, and A. Squillace, “Effect of welding parameters on mechanical and microstructural properties of dissimilar AA6082-AA2024 joints produced by friction stir welding”, Materials and Design 30, 609-616 (2009).
  • [6] L. Ceschini, , I. Boromei, G. Minak, A. Morri, and F. Tarterini, “Effect of friction stir welding on microstructure, tensile and fatigue properties of the AA7005/10 vol. % Al2O3 composite”, Composites Science and Technology 67 (3-4), 605-615 (2007).
  • [7] P. Xue, D.R. Ni, D. Wang, B.L. Xiao, and Z.Y. Ma, “Effect of friction stir welding parameters on the microstructure and mechanical properties of the dissimilar Al-Cu joints”, Materials Science and Engineering A 528 (13-14), 4683-4689 (2011).
  • [8] I. Nikulin, S. Malopheyev, A. Kipelova, and R. Kaibyshev, “Effect of spd and friction stir welding on microstructure and mechanical properties of Al-Cu-Mg-Ag sheets”, Materials Letters 66 (1), 311-313 (2012).
  • [9] P. Cavaliere, G. Campanile, F. Panella, and A. Squillace, “Effect of welding parameters on mechanical and microstructural properties of AA6056 joints produced by friction stir welding”, J. Materials Processing Technology 180 (1-3), 263-270 (2006).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-593fd89e-c37e-4515-90d0-dba5943ca17f
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