A Study of the Effects on the Structural Strength by Change of Spot Welding Pitch

점용접의 간격 변화에 의한 구조 강성 영향 평가 연구

  • 홍민성 (아주대학교 공과대학 기계공학부) ;
  • 김종현 (아주대학교 산업대학원 기계공학과)
  • Received : 2010.05.11
  • Accepted : 2010.06.26
  • Published : 2010.08.15

Abstract

In general, spot welding is used at no welding rod or flux for the process, low welding point temperature compared to arc welding, short heating time, less damage to the parent material, and low deformation and residual stress, relatively. Also, because of the pressurization effect, better mechanical qualities of the welding parts are obtained. Therefore, in various fields of industry its rapid operation speed can make mass production possible such as motor industry. In FEM analysis for the spot welding process, it is effective to use simple modeling rather than complicated one because of its numerous number of spots and reduction of analysis time. Therefore, this study provides with not only simplification of modeling analysis by using beam component composition of structure without re-compositing the spot welding point mesh but also modeling analysis of which property of fracture strength is reflected. In addition complete spot welding model is examined at rectangular post shape (hat shape) by impact test, compared the results, and verified its validity. As a result, it is possible to optimize the welding position and to recognize the strength of structure and the proposed equal distance model shows the effect of welding point reduction and improvement of stiffness.

Keywords

References

  1. Song, J., Huh, H., Kim, H., and Kim, S., 2006, "Evaluation of the Finite Element Modeling of Spot-Welded Region for Crash Analysis," Transactions of KSAE, Vol. 14, pp. 174-183.
  2. Cha, C., Kang, K., Kim, Y., Kim, J., Kim, S., and Yang, I., 2001, "Collapse Characteristics on Width Ratio and Flange Spot-Weld Pitch for Hat-Shaped Members," Transaction of KSME, Vol. 25, pp. 98-105.
  3. Lee, H., Kim, B., and Han K., 2002, "Energy Absorption Characteristics and Optimal Welding Space of Square Hat Type Thin-walled Tube," Transaction of KSME, Vol. 26, pp. 2703-2714.
  4. Xiang, Y., Wang, Q., Fan, Z., and Fang, H., 2006, "Optimal crashworthiness design of a spot-welded thin-walled hat section," Finite element in Analysis and Design, Vol. 42, pp. 846-855. https://doi.org/10.1016/j.finel.2006.01.001
  5. Palmonella, M., Friswell, M., Monttershead, J., and Lees, A., 2004, "Guidelines for the Implementation of the CWELD and ACM2 Spot Weld Models in Structural Dynamics," Finite Elements in Analysis and Design, Vol, 41, pp. 193-210.
  6. Wang, J., Xia, Y., Zhou, Q., and Zhang, J., 2006, "Simulation of Spot Weld Pullout by Modeling Failure Around Nugget," SAE, 2006-01-0532.