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Axial capacity of rectangular concrete-filled steel tube columns – DOE approach

✍ Scribed by Manojkumar V. Chitawadagi; Mattur C. Narasimhan; S.M. Kulkarni


Publisher
Elsevier Science
Year
2010
Tongue
English
Weight
798 KB
Volume
24
Category
Article
ISSN
0950-0618

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✦ Synopsis


This paper presents the effect of change in wall thickness of the steel tube (t), strength of in-filled concrete (f cu ), cross-sectional area of the steel tube (A) and length of the tube (L) on ultimate axial load and axial shortening at ultimate point of rectangular concrete-filled steel tubes (CFT). Taguchi's approach with an L9 orthogonal array is used to reduce the number of experiments. With the help of initial experiments, linear regression models are developed to predict the ultimate axial load and the axial shortening at ultimate point. A total of 243 rectangular CFT samples are tested to verify the accuracy of these models at three factors with three levels. The experimental results are analyzed using Analysis Of Variance to investigate the most influencing factor on strength and axial shortening of CFT samples. Comparisons are made with predicted column strengths using the existing design codes, AISC- LRFD-1994 and EC4-1994.


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