Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/129320
Title: Axial behavior of concrete-filled double-skin tubular stub columns incorporating PVC pipes
Authors: Javed, Muhammmad Faisal
Rafiq, Haris
Khan, Mohsin Ali
Aslam, Fahid
Musarat, Muhammad Ali
Vatin, Nikolai Ivanovich
Keywords: Pipe, Plastic
Concrete-filled tubes
Tubular steel structures
Construction industry -- Materials management
Thin-walled structures
Buckling (Mechanics)
Strains and stresses
Issue Date: 2021
Publisher: MDPI AG
Citation: Javed, M. F., Rafiq, H., Khan, M. A., Aslam, F., Musarat, M. A., & Vatin, N. I. (2021). Axial behavior of concrete-filled double-skin tubular stub columns incorporating PVC pipes. Crystals, 11(12), 1434.
Abstract: This experimental study presents concrete-filled double-skin tubular columns and demonstrates their expected advantages. These columns consist of an outer steel tube, an inner steel tube, and concrete sandwiched between two tubes. The influence of the outer-to-inner tube dimension ratio, outer tube to thickness ratio, and type of inner tube material (steel, PVC pipe) on the ultimate axial capacity of concrete-filled double-skin tubular columns is studied. It is found that the yield strength of the inner tube does not significantly affect the ultimate axial capacity of concrete-filled double-skin tubular composites. With the replacement of the inner tube of steel with a PVC pipe, on average, less than 10% strength is reduced, irrespective of size and dimensions of the steel tube. Hence, the cost of a project can be reduced by replacing inner steel tubes with a PVC pipes. Finally, the experimental results are compared with the existing design methods presented in AISC 360-16 (2016), GB51367 (2019), and EC4 (2004). It is found from the comparison that GB51367 (2019) gives better results, followed by AISC (2016) and EC4 (2004).
URI: https://www.um.edu.mt/library/oar/handle/123456789/129320
Appears in Collections:Scholarly Works - FacBenCPM



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