Numerical analysis of tilted angle shear connectors in steel-concrete composite systems
This study investigates numerically the behavior of tilted angle shear connectors embedded in solid concrete slabs. Two different tilted angle connectors were used, titled angle with 112.5 and 135 degrees between the angle leg and steel beam flange. A nonlinear finite element model was developed to...
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my.utm.800612019-03-05T01:46:44Z http://eprints.utm.my/id/eprint/80061/ Numerical analysis of tilted angle shear connectors in steel-concrete composite systems Khorramian, Koosha Maleki, Shervin Shariati, Mahdi Jalali, Abdolrahim Tahir, M. M. TA Engineering (General). Civil engineering (General) This study investigates numerically the behavior of tilted angle shear connectors embedded in solid concrete slabs. Two different tilted angle connectors were used, titled angle with 112.5 and 135 degrees between the angle leg and steel beam flange. A nonlinear finite element model was developed to simulate and validate the experimental push-out tests. Parametric studies were performed to investigate the variations in concrete strength and connector's dimensions. The results indicate that the ultimate strength of a tilted angle shear connector is directly related to the square root of the concrete compressive strength. The effects of variations in the geometry of tilted angle connectors on the shear capacity are discussed in details. Based on the numerical analyses, two equations are proposed to estimate the ultimate capacity of tilted angle shear connectors of 112.5 and 135 degrees in the defined range of parameters. Techno Press 2017 Article PeerReviewed Khorramian, Koosha and Maleki, Shervin and Shariati, Mahdi and Jalali, Abdolrahim and Tahir, M. M. (2017) Numerical analysis of tilted angle shear connectors in steel-concrete composite systems. Steel and Composite Structures, 23 (1). pp. 67-85. ISSN 1229-9367 http://dx.doi.org/10.12989/scs.2017.23.1.067 DOI:10.12989/scs.2017.23.1.067 |
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TA Engineering (General). Civil engineering (General) Khorramian, Koosha Maleki, Shervin Shariati, Mahdi Jalali, Abdolrahim Tahir, M. M. Numerical analysis of tilted angle shear connectors in steel-concrete composite systems |
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This study investigates numerically the behavior of tilted angle shear connectors embedded in solid concrete slabs. Two different tilted angle connectors were used, titled angle with 112.5 and 135 degrees between the angle leg and steel beam flange. A nonlinear finite element model was developed to simulate and validate the experimental push-out tests. Parametric studies were performed to investigate the variations in concrete strength and connector's dimensions. The results indicate that the ultimate strength of a tilted angle shear connector is directly related to the square root of the concrete compressive strength. The effects of variations in the geometry of tilted angle connectors on the shear capacity are discussed in details. Based on the numerical analyses, two equations are proposed to estimate the ultimate capacity of tilted angle shear connectors of 112.5 and 135 degrees in the defined range of parameters. |
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Article |
author |
Khorramian, Koosha Maleki, Shervin Shariati, Mahdi Jalali, Abdolrahim Tahir, M. M. |
author_facet |
Khorramian, Koosha Maleki, Shervin Shariati, Mahdi Jalali, Abdolrahim Tahir, M. M. |
author_sort |
Khorramian, Koosha |
title |
Numerical analysis of tilted angle shear connectors in steel-concrete composite systems |
title_short |
Numerical analysis of tilted angle shear connectors in steel-concrete composite systems |
title_full |
Numerical analysis of tilted angle shear connectors in steel-concrete composite systems |
title_fullStr |
Numerical analysis of tilted angle shear connectors in steel-concrete composite systems |
title_full_unstemmed |
Numerical analysis of tilted angle shear connectors in steel-concrete composite systems |
title_sort |
numerical analysis of tilted angle shear connectors in steel-concrete composite systems |
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Techno Press |
publishDate |
2017 |
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http://eprints.utm.my/id/eprint/80061/ http://dx.doi.org/10.12989/scs.2017.23.1.067 |
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