TECHNICAL PAPERS
Nov 14, 2003

Local Buckling Tests on Cold-Formed Steel Beams

Publication: Journal of Structural Engineering
Volume 129, Issue 12

Abstract

C and Z sections are two of the most common cold-formed steel shapes in use today. Accurate prediction of the bending performance of these sections is important for reliable and efficient cold-formed steel structures. Recent analytical work has highlighted discontinuities and inconsistencies in the American Iron and Steel Institute (AISI) and Canadian Standards Association (S136) design provisions for stiffened elements under a stress gradient (i.e., the web of C or Z sections). New methods have been proposed for design, and an interim method has been adopted in the North American Specification (NAS). However, existing tests on C and Z sections do not provide a definitive evaluation of the design expressions, due primarily to incomplete restriction of the distortional buckling mode. Described in this paper is a series of flexural tests with details selected specifically to insure that local buckling is free to form, but distortional buckling and lateral-torsional buckling are restricted. The members selected for the tests provide systematic variation in the web slenderness (h/t) while varying other relevant nondimensional parameters (i.e., h/b, b/t, d/t, d/b). Initial analysis of the completed testing indicates that overall test-to-predicted ratios for AISI, S136, NAS, and the direct strength method are all adequate, but systematic differences are observed.

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References

American Iron Steel Institute (AISI). (1996). “Specification for the design of cold-formed steel structural members.” American Iron and Steel Institute. Washington, D.C.
American Society for Testing and Materials (ASTM). (2000). “E8-00, Standard test methods for tension testing of metallic material.” E8-00, American Society for Testing and Materials, Philadelphia, Pa.
Canadian Standards Association (1994). “Cold-formed steel structural members.” S136-94, Canadian Standards Association, Rexdale, Ont.
Elhouar, S., and Murray, T. M. (1985). “Adequacy of proposed AISI effective width specification provisions for Z- and C-purlin design.” Fears Structural Engineering Laboratory, FSEL/MBMA 85-04, University of Oklahoma, Norman, Okla.
HKS. (2001). ABAQUS Version 5.2., Hibbitt, Karlsson, and Sorensen, Inc., Pawtucket, R.I. 〈www.hks.com〉 (March 2002).
North American Specification (NAS). (2001). “North American specification for the design of cold-formed steel structural members.” American Iron and Steel Institute, Washington, D.C.
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Schafer, B. W. (2002b). “Design manual for direct strength method of cold-formed steel design.” Rep. to the American Iron and Steel Institute, Washington, D.C.; available online at 〈www.ce.jhu.edu/bschafer/direct_strength〉 (March 2002).
Schafer, B. W., and Peköz, T. (1998). “Direct strength prediction of cold-formed steel members using numerical elastic buckling solutions.” Proc., 14th Int. Spec. Conf. on Cold-Formed Steel Structures, St. Louis., University of Missouri-Rolla, Rolla, Mo.
Schafer, B. W., and Peköz, T.(1999). “Laterally braced cold-formed steel flexural members with edge stiffened flanges.” J. Struct. Eng., 125(2), 118–127.
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Published In

Go to Journal of Structural Engineering
Journal of Structural Engineering
Volume 129Issue 12December 2003
Pages: 1596 - 1606

History

Received: Mar 29, 2002
Accepted: Mar 6, 2003
Published online: Nov 14, 2003
Published in print: Dec 2003

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Authors

Affiliations

Cheng Yu
Graduate Research Assistant, 306 Latrobe Hall, Johns Hopkins Univ., Baltimore, MD 21218.
Benjamin W. Schafer
Assistant Professor, 203 Latrobe Hall, Johns Hopkins Univ., Baltimore, MD 21218.

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