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dc.contributor.authorSetiawan, Widia
dc.contributor.authorDarmadi, Djarot B.
dc.contributor.authorSuprapto, Wahyono
dc.contributor.authorSoenoko, Rudy
dc.date.accessioned2016-08-05T01:13:34Z
dc.date.available2016-08-05T01:13:34Z
dc.date.issued2016-08-01
dc.identifier.citation[1] W.M. Thomas, E.D. Nicholas, J.C. Needham, M.G. Murch, P. Templesmith, C.J. Dawes, G.B Patent Application No. 9125978.8 (December 1991). [1a] R. Nandan , T. DebRoy , H.K.D.H. Bhadeshia Recent advances in friction-stir welding – Process, weldment structure and properties, Department of Materials Science and Engineering, Pennsylvania State University, University Park, PA 16802, USA Department of Materials Science and Metallurgy, University of Cambridge, Cambridge CB2 3QZ, UK, 2008 [2] Padgett PN, Paglia C, Buchheit RG. Characterization of corrosion behavior in friction stir weld Al–Li–Cu AF/C458 Alloy. Friction stir welding and processingII. Warrendale (PA, USA): TMS; 2003. [3] Kazi SH, Murr LE. Complex flow phenomena associated with friction-stir welding of aluminum alloys. In: Mishra RS, et al., editors. Friction stir welding and processing, Warrendale (PA): TMS; 2001. p. 139–151. [4] McNelley TR, Swaminathan S, Su JQ. Recrystallization mechanisms during friction stir welding/processing of aluminum alloys. Scripta Mater2008;58:349–54. [5] Emad Salari , Mohammad Jahazi , Alireza Khodabandeh , Hadi Ghasemi-Nanesa, 2014, Influence of tool geometry and rotational speed on mechanical properties and defect formation in friction stir lap welded 5456 aluminum alloy sheets Science and Research Branch, Islamic Azad University, 1477893855 Tehran, Iran Department of Mechanical Engineering, École de Technologie Supérieure, 1100 rue Notre-Dame Ouest, Montréal, QC H3C1K3, Canada. [6] Bo Li, Yifu Shen, 2011, A feasibility research on friction stir welding of a new-typed lap–butt joint of dissimilar Al alloys College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, 29 Jiangjun Road, Nanjing 210016, PR China [7] T. Saeida, A. Abdollah-zadeh, B. Sazgari,2009, Weld ability and mechanical properties of dissimilar aluminum–copper lap joints made by friction stir welding Faculty of Materials Engineering, Sahand University of Technology, Tabriz, Iran Department of Materials Engineering, Tarbiat Modares University, P.O. Box 14115-143, Tehran, Iran [8] M. Haghshenas , A. Abdel-Gwad , A.M. Omran , B. Gökçe , S. Sahraeinejad , A.P. Gerlich Friction stir weld assisted diffusion bonding of 5754 aluminum alloy to coated high strength steels a Department of Mechanical and Mechatronics Engineering, University of Waterloo, Waterloo, ON, Canadab Mining and Metallurgical Department, Faculty of Engineering, Al-Azhar University, Qena, Egypt, Afyon Kocatepe University, Mechatronic Engineering Department, Afyonkarahisar, Turkeyin_ID
dc.identifier.issn2477-3328
dc.identifier.urihttp://hdl.handle.net/11617/7471
dc.description.abstractIn this research, Aluminum 6061 and Carbon steel ST 37 sheet were lap joined by friction stir welding. A hardened medium carbonese steel (EMS 45) was used as rotary Probe. The microstructures of the joining inter-metallic compounds were observed by scanning electron microscopy, microstructure photograph, and micro-hardness tests. The joint strength was evaluated by shear stress tests. The experiment was performed with varied length of pin probe 6, 7, and 8 mm, equal rotational speed of 2500 rpm, and welding speed (15 mm/minutes). The Inter-metallic compounds of aluminums sheet was cut off the pin probe and the mixture on the Carbon steel ST 37. Intermetallic compounds were analyzed on its micro sructure in this region aluminum and carbon steel mixed, the value joint tensile shear 6.2KN.in_ID
dc.language.isoenin_ID
dc.publisherUniversitas Muhammadiyah Surakartain_ID
dc.subjectFriction Stir weldingin_ID
dc.subjectIntermetallic compoundsin_ID
dc.subjectLap jointin_ID
dc.titleLap Joint Carbon Steel ST 37 and Aluminum 6061 with Friction Stir Welding (FSW)in_ID
dc.typeArticlein_ID


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