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Effect of Steel and Concrete Thickness on Shear Strength of Square Concrete Filled Double Skin Tubular Beams (CFDSTB’S)

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dc.contributor.author NAJEEB ULLAH
dc.date.accessioned 2020-10-24T08:18:57Z
dc.date.available 2020-10-24T08:18:57Z
dc.date.issued 2020
dc.identifier.uri http://10.250.8.41:8080/xmlui/handle/123456789/4014
dc.description Dr. Muhammad Usman en_US
dc.description.abstract Concrete Filled Double Skin Tubular (CFDST) members are one of the most advanced forms of composite construction, consisting of two tubes, placed eccentrically or concentrically, with concrete sandwiched between the tubes. CFDST members are characterized by their increased flexural strength, improved ductility and enhanced stiffness which render them suitable for earthquake prone regions. This paper explores the shear characteristics of square CFDST beams experimentally under the application of uniformly distributed load (UDL). Two main parameters i.e. steel thickness and thickness of the sandwiched concrete, were varied and their effect on shear strength was studied along with the associated energy dissipation and ductility. It has been found that decreasing the thickness of the sandwiched concrete (by increasing the dimensions of the inner tube) for the same thickness of the steel tubes decreases the shear strength of the members. On the other hand, increasing the gauge (thickness) of the steel tubes for the same thickness of the sandwiched concrete increases the shear strength. Also, as the dimensions of the inner tube increases (thickness of the sandwiched concrete decreases) for the same thickness of the steel tubes, the associated energy dissipation decreases while the ductility increases. en_US
dc.publisher NICE, National University of Sciences and Technology (NUST), Islamabad en_US
dc.subject Effect of Steel and Concrete Thickness on Shear Strength of Square Concrete Filled Double Skin Tubular Beams (CFDSTB’S) en_US
dc.title Effect of Steel and Concrete Thickness on Shear Strength of Square Concrete Filled Double Skin Tubular Beams (CFDSTB’S) en_US
dc.type Thesis en_US


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