Experimental Study on Shear Behavior of Reinforced Concrete Sandwich Deep Beam

IF 0.6 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Annales De Chimie-science Des Materiaux Pub Date : 2020-10-31 DOI:10.18280/acsm.440501
Vaka Gopi, K. K. Swamy, A. Gopi, V. Narayana
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Abstract

Received: 6 April 2020 Accepted: 11 September 2020 In present making of construction industry at a high pace. The tendency of world influenced the high raised buildings. In modern days one of the most common element is deep beam, constructed a small span to depth ratio. The transfer girders most of used in deep beams. In an experimental program consists of 12 deep beam specimens are carried out for shear strength behavior investigation of Reinforced Concrete sandwich deep beam concealed with insulation pad in various depths 200mm and 300mm and 400mm. in the experimental program effective length, depth, the width of the specimens, width of bearing plates, longitudinal reinforcement as 1% to maintain constantly and horizontal reinforcement as varies as 0.15% and 0.25% and 0.35%. We are considered shear span to depth ratio of deep beam is 0.95. The main aim of the experimental study the influence of longitudinal shear reinforcement along with vertical and horizontal shear reinforcement on the shear strength, shear ductility of RC sandwich deep beams of insulation pads placed at different depths.
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钢筋混凝土夹层深梁抗剪性能试验研究
收稿日期:2020年4月6日收稿日期:2020年9月11日世界的趋势影响着高层建筑。在现代,最常见的一种结构形式是深梁,其结构跨度与深度比较小。转换梁多用于深梁。采用12根深梁试件,在200mm、300mm和400mm的不同深度进行了含保温垫层的钢筋混凝土夹层深梁的抗剪强度特性研究。在试验方案中,有效长度、深度、试件宽度、承载板宽度、纵向配筋为1%保持不变,水平配筋为0.15%、0.25%和0.35%。我们认为深梁的抗剪跨深比为0.95。试验的主要目的是研究纵剪配筋、纵剪配筋和横剪配筋对不同深度保温垫层的RC夹层深梁抗剪强度、抗剪延性的影响。
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来源期刊
Annales De Chimie-science Des Materiaux
Annales De Chimie-science Des Materiaux 工程技术-材料科学:综合
CiteScore
1.70
自引率
25.00%
发文量
33
审稿时长
>12 weeks
期刊介绍: The ACSM is concerning the cutting-edge innovations in solid material science. The journal covers a broad spectrum of scientific fields, ranging all the way from metallurgy, semiconductors, solid mineral compounds, organic macromolecular compounds to composite materials. The editorial board encourages the submission of original papers that deal with all aspects of material science, including but not limited to synthesis and processing, property characterization, reactivity and reaction kinetics, evolution in service, and recycling. The papers should provide new insights into solid materials and make a significant original contribution to knowledge.
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