@ARTICLE{Shallal_M.A._Tests_2018, author={Shallal, M.A. and Al Musawi, A.M.K.}, volume={Vol. 64}, number={No 2}, journal={Archives of Civil Engineering}, pages={187-199}, howpublished={online}, year={2018}, publisher={WARSAW UNIVERSITY OF TECHNOLOGY FACULTY OF CIVIL ENGINEERING and COMMITTEE FOR CIVIL ENGINEERING POLISH ACADEMY OF SCIENCES}, abstract={Reinforced concrete is one of the most widely used structural components about which much scientific research has been conducted; however, some of its characteristics still require further research. The main focus of this study is the effect of direct fire on the shear transfer strength of concrete. It was investigated under several parameters including concrete strength, number of stirrup legs (the steel area across the shear plane), and fire duration. The experimental program involved the testing of two sets (groups) of specimens (12 specimens each) with different concrete strengths. Each set contained specimens of two or four stirrup legs exposed to direct fire from one side (the fire was in an open area to simulate a real-life event) for a duration of one, two, and three hours. The results of the comparison showed the importance of using high-performance concrete (instead of increasing the number of stirrup legs) to resist shear stress for the purpose of safety. A significant reduction in shear strength occurred due to the deterioration of the concrete cover after three hours of direct fire exposure.}, type={Article}, title={Tests of residual shear transfer strength of concrete exposed to fire}, URL={http://www.journals.pan.pl/Content/115591/PDF/12_ace-2018-0024.pdf}, keywords={Fire, Shear Transfer, Compressive Strength, Reinforced Concrete, Stirrup Legs}, }