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Interface driven optimisation of springback in stretch bending of autobody panels

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: Analytical determination of springback in the stretch bending of autobody double curved panels and optimization of parameters like yield strength and thickness of plate, have been the prime purposes of this paper. Design/methodology/approach: The elasto plastic behaviour governed by Hooke's law and Holomann's law, has been solved using interface theory, the original contribution of author. In the process Hegde's interface modulus has been coined, which depends on both modulus of elasticity and the plastic coefficient. Findings: The linearized functions of change of springback and stretch tension are solved for optimization, again using interface theory briefed in the Appendix. Practical implications: The published models of springback optimization being complicated, a need has been felt to formulate computationally easy and confidently accurate model of springback determination. The theoretical deliberations are demonstrated on materials based on the data obtained from the published references. Originality/value: The authors are confident of the originality and do claim authentically the novelty in the workout of the analysis. The interface theory applied at several stages in the analysis gives the optimal solutions to variables in the hyperspace defined by a linear system with redundancy in unknown variables.
Rocznik
Strony
168--173
Opis fizyczny
Bibliogr. 15 poz., tab., rys., wykr.
Twórcy
autor
autor
  • Department of Mechanical Engineering, R.V. College of Engineering, Bangalore - 560059, India, gagehe@yahoo.co.in
Bibliografia
  • [1] W.Y.D. Yuen, Spring back in the stretch bending of sheet metal with non uniform variation, Journal of Materials Processing Technology 22 (1990) 1-20.
  • [2] W. Johnson, T.X. Yu, Spring back after the biaxial elastic plastic pure bending of a rectangular plate, International Journal of Mechanical Sciences 23 (1981) 619-629.
  • [3] W. Johnson, T.X. Yu, On the range of applicability of the results for the spring back of an elastic/perfectly plastic rectangular plate after subjecting to biaxial pure bending, International Journal of Mechanical Sciences 23 (1987) 631-643.
  • [4] Y. Tozawa, Forming technology for raising the accuracy of sheet formed products, Journal of Materials Processing Technology 22 (1990) 343-352.
  • [5] Y. Umehara, Technologies for the more precise press forming of automobile parts, Journal of Materials Processing Technology 22 (1990) 239-247.
  • [6] R.A. Ayures, SHAPESET: A process to reduce sidewall curl spring back in high strength steel rails, Journal of Applied Metal Working 3 (1984) 127-135.
  • [7] Y.C. Liu, The effect of restraining force on shape deviations in flanged channels, Journal of Engineering Materials and Technology 110 (1988) 389-398.
  • [8] D.E. Hardt, R.C. Fenn, Real time sheet forming stability control, Proceedings of the 16th Bienniel IDDRG Congress, Borlange, 1990, 73-84.
  • [9] A.P. Karafillis, M.C. Boyce, Tooling design in sheet metal forming using spring back calculations, International Journal of Mechanical Sciences 13 (1991) 113-131.
  • [10] K.A. Stelson, D.C. Gossard, An adaptive press brake control using an elastic plastic material model, Journal of Engineering for Industry 104 (1982) 289-297.
  • [11] D.E. Hardt, M.A. Roberts, K.A. Stelson, Material adaptive control of sheet metal roll bending, Journal of Dynamic Systems Measurement and Control 104 (1982) 104-112.
  • [12] R.D. Webb, D.E. Hardt, A transfer function description of sheet metal forming for process control, Journal of Engineering for Industry 113 (1991) 44-57.
  • [13] N. Asnafi, On the spring back of double curved autobody panels, International Journal of Mechanical Sciences 43 (2001) 5-37.
  • [14] G.S. Hegde, G.M. Madhu, Enhance explicit scheme to solve transient heat conduction problem, Chemical Product and Process Modeling 2/1 (2007) 33-38.
  • [15] K. Yoshida, Analysis and control of buckling behaviour due to elastic recovery in press forming, Proceedings of the 13th Biennial IDDRG Congress, Melbourne, 1984, 73-84.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-PWA9-0042-0022
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