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http://dx.doi.org/10.12989/sem.2005.21.4.407

Effects of plate slenderness on the ultimate strength behaviour of foam supported steel plate elements  

Pokharel, Narayan (School of Urban Development, Queensland University of Technology)
Mahendran, Mahen (School of Urban Development, Queensland University of Technology)
Publication Information
Structural Engineering and Mechanics / v.21, no.4, 2005 , pp. 407-422 More about this Journal
Abstract
Plate elements in fully profiled sandwich panels are generally subjected to local buckling failure modes and this behaviour is treated in design by using the conventional effective width method for plates with a width to thickness (b/t) ratio less than 100. If the plate elements are very slender (b/t > 1000), the panel failure is governed by wrinkling instead of local buckling and the strength is determined by the flexural wrinkling formula. The plate elements in fully profiled sandwich panels do not fail by wrinkling as their b/t ratio is generally in the range of 100 to 600. For this plate slenderness region, it was found that the current effective width formula overestimates the strength of the fully profiled sandwich panels whereas the wrinkling formula underestimates it. Hence a new effective width design equation has been developed for practical plate slenderness values. However, no guidelines exist to identify the plate slenderness (b/t) limits defining the local buckling, wrinkling and the intermediate regions so that appropriate design rules can be used based on plate slenderness ratios. A research study was therefore conducted using experimental and numerical studies to investigate the effect of plate slenderness ratio on the ultimate strength behaviour of foam supported steel plate elements. This paper presents the details of the study and the results.
Keywords
profiled sandwich panels; local buckling; flexural wrinkling; plate slenderness limit; intermediate region; effective width;
Citations & Related Records

Times Cited By Web Of Science : 1  (Related Records In Web of Science)
Times Cited By SCOPUS : 1
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1 Mahendran, M. and McAndrew, D. (2003), 'Flexural wrinkling strength of lightly profiled sandwich panels with transverse joints in the foam core', Advances in Struct. Eng, 6(4), 325-337   DOI   ScienceOn
2 Pokharel, N. and Mahendran, M. (2004a), 'Finite element analysis and design of sandwich panels subject to local buckling effects', Thin-Walled Structures, 42(4), 589-611   DOI   ScienceOn
3 Pokharel, N. and Mahendran, M. (2004b), 'Local buckling behaviour and design of profiled sandwich panels', Australian J. Struct. Eng, 5(3), 185-198   DOI
4 Winter, G (1947), 'Strength of thin steel compression flanges', Trans. ASCE, 112, pp.527
5 Pokharel, N. and Mahendran, M. (2003), 'Experimental investigation and design of sandwich panels subject to local buckling effects', J. Constructional Steel Research, 59(12), 1533-1552   DOI   ScienceOn
6 Hibbit, Karlsson and Sorensen (HKS) (1998), ABAQUS User's Manual, Pawtucket, RI, USA
7 Davies, J.M. (2001), Light Weight Sandwich Construction, UK: Blackwell Science
8 Davies, J.M. and Hakmi, M.R. (1990), 'Local buckling of profiled sandwich plates', Proc. IABSE Symposium, Mixed Structures Including New Materials, Brussels, September, 533-538
9 Davies, J.M. and Hakmi, M.R. (1992), 'Postbuckling behaviour of foam-filled thin-walled steel beams', J. Construction Steel Research, 20, 75-83
10 International Council for Building Research, Studies and Documentation(ClB) (2000), European Recommendations for Sandwich Panels Part 1: Design, crn Publication 147
11 Mahendran, M. and Jeevaharan, M. (1999), 'Local buckling behaviour of steel plate elements supported by a plastic foam material', Struct. Eng Mech., 7(5), 433-445   DOI   ScienceOn