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Seismic behavior of fiber reinforced cementitious composites coupling beams with conventional reinforcement

机译:纤维增强水泥复合材料耦合梁与常规加固的地震性能

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Fiber reinforced cementitious composites (FRCC) materials that exhibit strain-hardening and multiple cracking properties under tension were recently developed as innovative building materials for construction. This study aims at exploring the use of FRCC on the seismic performance of coupling beams with conventional reinforcement. Experimental tests were conducted on seven FRCC precast coupling beams with small span-to-depth ratios and one ordinary concrete coupling beam for comparison. The crack and failure modes of the specimens under the low cycle reversed loading were observed, and the hysteretic characteristics, deformation capacity, energy dissipation capacity and stiffness degradation were also investigated. The results show that the FRCC coupling beams have good ductility and energy dissipation capacities compared with the ordinary concrete coupling beam. As the confinement stirrups and span-to-depth ratio increase, the deformation capacity and energy dissipation capacity of coupling beams can be improved significantly. Finally, based on the experimental analysis and shear mechanism, a formula for the shear capacity of the coupling beams with small span-to-depth ratios was also presented, and the calculated results agreed well with the experimental results.
机译:最近开发出在张力下表现出应变硬化和多裂解性能的纤维增强胶凝材料(FRCC)材料作为建筑的创新建筑材料。本研究旨在探索FRCC对具有常规加强件耦合梁的地震性能的使用。在七个FRCC预制耦合光束上进行实验测试,具有小的跨度深度比率和一个普通的混凝土耦合光束,用于比较。还观察到低循环反转载荷下试样的裂缝和失效模式,还研究了滞后特性,变形容量,能量耗散能力和刚度降解。结果表明,与普通的混凝土耦合光束相比,FRCC耦合光束具有良好的延展性和能量耗散能力。随着限制刺毛和跨度深度比增加,可​​以显着提高耦合光束的变形容量和能量耗散能力。最后,基于实验分析和剪切机制,还提出了一种用于具有小跨度对深度比率的耦合光束的剪切容量的公式,并且计算结果与实验结果很好。

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