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Information Journal Paper

Title

THE INVESTIGATION OF THE AXIS POSITION OF TOOL PIN RELATIVE TO THE TOOL SHOULDER AXIS IN FRICTION STIR WELDING PROCESS ON ALUMINUM 5083

Pages

  31-39

Abstract

 In this paper, the effect of the position of the pin relative to tool shoulder has been investigated in the FRICTION STIR WELDING process on aluminum 5083. Firstly, the preparation of the process is performed that includes tool, work piece fastened to dynamometer by special fixture and milling machine. Test is performed by tool with pin coaxial with the axis of tool shoulder in this process. So, the tool enters the edges of joint location and moves along joint line. Results are heat generation, severely plastic deformation and material displacement in joint location and this leads to complete joint of the edges. Force and temperature in joint region are measured during the process. Then, the parameters of the shape and the position of tool pin change and joint test is performed. The shape of the tool changes by offsetting the axis of tool pin relative to the axis of tool shoulder with different designs and the results of WELDING FORCEs and TOOL TEMPERATURE and mechanical properties are considered.

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  • Cite

    APA: Copy

    AMINI, S., AMIRI, M.R., & GOLABI, S.. (2015). THE INVESTIGATION OF THE AXIS POSITION OF TOOL PIN RELATIVE TO THE TOOL SHOULDER AXIS IN FRICTION STIR WELDING PROCESS ON ALUMINUM 5083. AEROSPACE MECHANICS JOURNAL, 11(1 (39) (MANUFACTURING AND PRODUCTION)), 31-39. SID. https://sid.ir/paper/101964/en

    Vancouver: Copy

    AMINI S., AMIRI M.R., GOLABI S.. THE INVESTIGATION OF THE AXIS POSITION OF TOOL PIN RELATIVE TO THE TOOL SHOULDER AXIS IN FRICTION STIR WELDING PROCESS ON ALUMINUM 5083. AEROSPACE MECHANICS JOURNAL[Internet]. 2015;11(1 (39) (MANUFACTURING AND PRODUCTION)):31-39. Available from: https://sid.ir/paper/101964/en

    IEEE: Copy

    S. AMINI, M.R. AMIRI, and S. GOLABI, “THE INVESTIGATION OF THE AXIS POSITION OF TOOL PIN RELATIVE TO THE TOOL SHOULDER AXIS IN FRICTION STIR WELDING PROCESS ON ALUMINUM 5083,” AEROSPACE MECHANICS JOURNAL, vol. 11, no. 1 (39) (MANUFACTURING AND PRODUCTION), pp. 31–39, 2015, [Online]. Available: https://sid.ir/paper/101964/en

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