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Information Journal Paper

Title

Experimental Study of Drawing Depth and Weld Line Movement in TWBs Sheets Manufactured by Laser and Friction Stir Welding

Pages

  221-228

Abstract

 Due to higher demands for tailor welded blanks (TWBs) applications in transportation industry, it is worthy to understand their forming characteristics in manufacturing processes, especially the deep drawing, in order to produce products with higher qualities. Due to differences between the base materials strength as well as existence of the welding zone, the formability of TWBs is frequently less than the base metals. Comparison ofLaser Welding| Friction Stir Welding| Tailor Welded Blanks (TWBs)| Weld Line Movement and drawing depth in TWBs designed and produced by Laser Welding| Friction Stir Welding| Tailor Welded Blanks (TWBs)| Weld Line Movement andLaser Welding| Friction Stir Welding| Tailor Welded Blanks (TWBs)| Weld Line Movement are the aims of this study. Because of creation of limited heat affected zone area and suitable keyhole, Laser Welding| Friction Stir Welding| Tailor Welded Blanks (TWBs)| Weld Line Movement is more appropriate for TWBs production comparing to the other welding processes. The parameters of theLaser Welding| Friction Stir Welding| Tailor Welded Blanks (TWBs)| Weld Line Movement process are very important due to having high influence on complicated plastic zone variation, material flow pattern and temperature distribution in TWBs sheets. In this paper, having designed the experiments, the effect of blank holder force and linear welding velocity on drawing depth and weld line displacement of TWBs have been investigated. Moreover, the harnesses of the weld zone in both processes have been examined. Results show that by increasing the linear velocity of Laser Welding| Friction Stir Welding| Tailor Welded Blanks (TWBs)| Weld Line Movement, the amount of weld line displacement and drawing depth will be increased. Furthermore, the higher linear velocity ofLaser Welding| Friction Stir Welding| Tailor Welded Blanks (TWBs)| Weld Line Movement will result into the higher weld line displacement and drawing depth. Likewise, the harnesses of the Laser Welding| Friction Stir Welding| Tailor Welded Blanks (TWBs)| Weld Line Movement zone are higher than those ones forLaser Welding| Friction Stir Welding| Tailor Welded Blanks (TWBs)| Weld Line Movement zone.

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  • Cite

    APA: Copy

    Amin zadeh, Ahmad, SAFARI, AMIR, & PARVIZI, ALI. (2018). Experimental Study of Drawing Depth and Weld Line Movement in TWBs Sheets Manufactured by Laser and Friction Stir Welding. MODARES MECHANICAL ENGINEERING, 18(8 ), 221-228. SID. https://sid.ir/paper/179884/en

    Vancouver: Copy

    Amin zadeh Ahmad, SAFARI AMIR, PARVIZI ALI. Experimental Study of Drawing Depth and Weld Line Movement in TWBs Sheets Manufactured by Laser and Friction Stir Welding. MODARES MECHANICAL ENGINEERING[Internet]. 2018;18(8 ):221-228. Available from: https://sid.ir/paper/179884/en

    IEEE: Copy

    Ahmad Amin zadeh, AMIR SAFARI, and ALI PARVIZI, “Experimental Study of Drawing Depth and Weld Line Movement in TWBs Sheets Manufactured by Laser and Friction Stir Welding,” MODARES MECHANICAL ENGINEERING, vol. 18, no. 8 , pp. 221–228, 2018, [Online]. Available: https://sid.ir/paper/179884/en

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