204
Views
8
CrossRef citations to date
0
Altmetric
Original Articles

Optimisation design of reinforced S-shaped frame structure under axial dynamic loading

, , &
Pages 385-393 | Received 05 Sep 2013, Accepted 12 Mar 2014, Published online: 07 Apr 2014

References

  • K. Abe, K. Nishigaki, S. Ishivama, M. Ohta, M. Takagi, F. Matsukawa, and Masanori Mizuno, Collapse of thin-walled curved beam with closed-hat section-part 2: Simulation by plane plastic hinge model, SAE Technical Paper 900461; 1990.
  • E. Ahmed, X.L. Yee, and M. John, Crash analysis and energy absorption characteristics of S-shaped longitudinal members, Thin-Walled Struct. 68 (2013), pp. 55–74.
  • J. Bi, H.B. Fang, Q. Wang, and X.C. Ren, Modeling and optimization of foam-fill walled columns for crashworthiness designs, Finite Elem. Anal. Des. 46 (9) (2010), pp. 698–709.
  • J. Forsberg and L. Nilsson, Evaluation of response surface methodologies used in crashworthiness optimization, Int. J. Impact Eng. 32 (5) (2006), pp. 759–777.
  • J.O. Hallquist. LS-DYNA Theoretical Manual. Livemore Software Technology Corporation, California, 1998.
  • J.O. Hallquist. LS-DYNA Keyword User's Manual. Livemore Software Technology Corporation, California, 2003.
  • S.J. Hou, X. Han, G.Y. Sun, S.Y. Long, X.J. Yang, W. Li, Xujing Yang, and Qing Li, Multiobjective optimization for tapered circular tubes, Thin Wall. Struct. 49 (7) (2011), pp. 855–863.
  • S.J. Hou, Q. Li, S.Y. Long, X.J. Yang, and W. Li, Multiobjective optimization of multi-cell sections for the crashworthiness design, Int. J. Impact. Eng. 35 (11) (2008), pp. 1167–355.
  • S.J. Hou, Q. Li, S.Y. Long, X.J. Yang, and W. Li, Crashworthiness design for foam filled thin-wall structures, Mater Des. 30 (6) (2009), pp. 2024–2032.
  • H.S. Kim, New extruded multi-cell aluminum profile for maximum crash energy absorption and weight efficiency, Thin-Walled Struct. 40 (4) (2002), pp. 311–327.
  • H. Kim and T. Wierzbicki, Effect of the cross-sectional shape of hat-type cross sections on crash resistance of an S-frame, Thin-Walled Struct. 39 (2001), pp. 535–554.
  • H.S. Kim and T. Wierzbicki, Weight and crash optimization of foam-filled three-dimensional ‘S’ frame, Comput. Mech. 28 (2002), pp. 417–424.
  • J.P.C. Kleijnen, An overview of the design and analysis of simulation experiments for sensitivity analysis, Eur. J. Oper. Res. 164 (2) (2005), pp. 287–300.
  • H. Kurtaran, A. Eskandarian, and D. Marzougui, Crashworthiness design optimization using successive response surface approximations, Comput. Mech. 29 (45) (2002), pp. 409–421.
  • Y. Ohkami, K. Takada, K. Motomura, M. Shimamura, H. Tomizawa, and M. Usuda, Collapse of thin-walled curved beam with closed-hat section-part 1: Study on collapse characteristics, SAE Technical Paper 900460; 1990.
  • S.P. Santosa, T. Wierzbicki, A.G. Hanssen, and Magnus Langseth, Experimental and numerical studies of foam-filled sections, Int. J. Impact. Eng. 24 (5) (2000), pp. 509–534.
  • G.G. Wang and S. Shan, Review of metamodeling techniques in support of engineering design optimization, ASME Trans. J. Mech. Des. 129 (4) (2007), pp. 370–380.
  • H.R. Zarei and M. Kröger, Crashworthiness optimization of empty and filled aluminum crash boxes, Int. J. Crashworthines 12 (3) (2007), pp. 255–264.
  • H.R. Zarei and M. Kröger, Optimization of the foam-filled aluminum tubes for crush box application, Thin-Walled Struct. 46 (2) (2008), pp. 214–221.
  • Z. Zhang H, S.T. Liu, and Z.L. Tang, Comparisons of honeycomb sandwich and foam-filled cylindrical columns, Thin-Walled Struct. 49 (9) (2011), pp. 1071–1079.
  • C. Zhang and A. Saigal, Crash behavior of a 3D S-shape space frame structure, J. Mater. Process. Technol. 191 (2007), pp. 256–259.
  • Y. Zhang, G.Y. Sun, G.Y. Li, Z. Luo, and Q. Li, Optimization of foam-filled bitubal structures for crashworthiness criteria, Mater. Des. 38 (2012), pp. 99–109.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.