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Behaviour of Steel Fibre Reinforced Rubberized Continuous Deep Beams
[摘要] Transfer girders and pier caps, which are in fact deep beams, are critical structural elements present in high-rise buildings and bridges respectively. During an earthquake, failure of lifeline structures like bridges and critical structural members like transfer girders will result in severe catastrophes. Ductility is the key factor that influences the resistance of any structural member against seismic action. Structural members cast using materials having higher ductility will possess higher seismic resistance. Previous research shows that concrete having rubber particles (rubcrete) possess better ductility and low density in comparison to ordinary concrete. The main hindrance to the use of rubcrete is the reduction in compressive and tensile strength of concrete due to the presence of rubber. If these undesirable properties of rubcrete can be controlled, a new cementitious composite with better ductility, seismic performance and economy can be developed. A combination of rubber particles and steel fibre has the potential to reduce the undesirable effect of rubcrete. In this paper, the effect of rubber particles and steel fibre in the behaviour of two-span continuous deep beams is studied experimentally. Based on the results, optimum proportions of steel fibre and rubber particles for getting good ductile behaviour with less reduction in collapse load is found out.
[发布日期]  [发布机构] Department of Civil Engineering, NIT Calicut, Kerala, India^1
[效力级别] 机械制造 [学科分类] 
[关键词] Cementitious composites;Compressive and tensile strengths;Continuous deep beams;High rise building;Lifeline structures;Seismic Performance;Structural elements;Undesirable effects [时效性] 
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