Numerical Analysis of Hollow Cross Section Reinforced Concrete Beams Strengthened by Steel Fibers Under Pure Torsion

J. Mures, A. Chkheiwer, Mazin A. Ahmed
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引用次数: 2

Abstract

This numerical study aimed to investigate the torsional behaviour of hollow cross section reinforced concrete members strengthened with steel fibers (end hooked and corrugated), subjected to pure torsion. The numerical results were compared with experimental results and show good agreement. The experimental study was conducted on ten steel fiber reinforced concrete specimens with low longitudinal reinforcement ratio to investigate the torsional behavior under pure torsion. For this analysis, a computer program (ANSYS 18.2) was used. The brick elements 8-nodes (SOLID65) were used to concrete simulation, while the steel bars simulated as axial members (link 180). The steel fibre was represented theoretically by the stress-strain relationship. The theoretical results indicated that the adopted smeared crack model is capable of making relatively acceptable estimations of cracking and ultimate torsional capacity of the members.
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纯扭转作用下钢纤维加固空心截面钢筋混凝土梁的数值分析
本数值研究旨在研究钢纤维(末端钩形和波纹状)增强的空心截面钢筋混凝土构件在纯扭转作用下的扭转行为。数值计算结果与实验结果吻合较好。采用10个低纵向配筋率钢纤维混凝土试件,研究其在纯扭转作用下的扭转性能。为了进行分析,使用了计算机程序(ANSYS 18.2)。采用8节点砖单元(SOLID65)进行混凝土模拟,钢筋作为轴向构件(链接180)进行模拟。钢纤维在理论上用应力-应变关系来表示。理论结果表明,所采用的涂抹裂纹模型能够较好地估计构件的开裂和极限抗扭能力。
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