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contributor authorG. Aruna
contributor authorKrishanu Roy
contributor authorJames B. P. Lim
contributor authorP. Suresh Kumar
date accessioned2022-05-07T20:20:25Z
date available2022-05-07T20:20:25Z
date issued2022-02-24
identifier other(ASCE)SC.1943-5576.0000678.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4282298
description abstractThis paper investigates the axial-compression capacity of cold-formed steel (CFS) equal angle sections with complex edge stiffeners. Both experimental and numerical analyses were carried out. In total, 10 tests were carried out and the results are presented in this paper. Preceding to compression tests, the material properties were determined and initial geometric imperfections of all the test specimens were measured. From the results of compression tests, the specimens were all susceptible to flexural buckling. A numerical model was created using the finite-element (FE) software ABAQUS version 6.11. The results of finite-element analysis (FEA) substantiated with the experimental results. The FE models were found to accurately predict the experimental behavior. Thus, the validated FE models were used for a parametric study to analyze the effect of slenderness ratio and the orientation of edge stiffeners on the axial capacity. The axial strengths obtained from parametric study were compared with the design strengths calculated by the direct strength method (DSM) from the American Iron and Steel Institute (AISI) specification. Upon comparison, it was found that the axial strengths calculated based on the current DSM are overconservative by 58% on an average.
publisherASCE
titleCold-Formed Steel Equal Angles with Complex Edge Stiffeners under Axial-Compression Laboratory Testing, Numerical Simulation, and Design
typeJournal Paper
journal volume27
journal issue2
journal titlePractice Periodical on Structural Design and Construction
identifier doi10.1061/(ASCE)SC.1943-5576.0000678
journal fristpage04022012
journal lastpage04022012-11
page11
treePractice Periodical on Structural Design and Construction:;2022:;Volume ( 027 ):;issue: 002
contenttypeFulltext


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