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Cyclic behavior of ultra-high performance fiber reinforced concrete beam-column joint

机译:超高性能纤维混凝土梁柱节点的循环特性

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Ultra-high performance fiber reinforced concrete (UHPFRC) is a unique class of fiber-reinforced concrete featuring ultra-high compressive strength and ductile tensile strain hardening behavior, accompanied by multiple narrow cracking. Although many studies have confirmed its superior mechanical and damage tolerance properties under monotonic or blast loading, limited research has been carried out on the cyclic performance of UHPFRC structural members. This paper proposes the use of UHPFRC to improve the cyclic performance of structural elements. An experimental program was carried out on a large number of UHPFRC beam-column joint specimens under a cyclic lateral load. After the cyclic loading test, the following results were obtained: (a) hysterical performance, (b) maximum load, (c) maximum displacement, (d) the maximum energy dissipation (measured by hysteresis cycles), (e) stiffness degradation, (f) the cracking pattern, and (g) the cracking area. The analysis showed that UHPFRC specimens have at least 157% higher energy dissipation than nonfiber conventional reinforced concrete (RC). The initial stiffness of UHPFRC specimens without fibers (NF) was at least 23% higher than the RC specimen. For UHPFRC with fiber, initial stiffness was at least 45% higher than RC specimen.
机译:超高性能纤维增强混凝土(UHPFRC)是一类独特的纤维增强混凝土,具有超高的抗压强度和延展的拉伸应变硬化性能,并伴有多个窄裂缝。尽管许多研究已经证实了其在单调或爆炸载荷下的优异的机械和损伤耐受性能,但对UHPFRC结构构件的循环性能进行的研究有限。本文提出使用UHPFRC来改善结构元件的循环性能。在周期性的横向载荷下,对大量的UHPFRC梁柱节点标本进行了实验程序。经过循环载荷试验,获得了以下结果:(a)磁滞性能,(b)最大载荷,(c)最大位移,(d)最大能量耗散(通过磁滞循环测量),(e)刚度降低, (f)裂纹图案,和(g)裂纹面积。分析表明,UHPFRC标本的能耗比非纤维常规钢筋混凝土(RC)高至少157%。没有纤维(NF)的UHPFRC标本的初始刚度比RC标本高至少23%。对于带纤维的UHPFRC,初始刚度比RC样品至少高出45%。

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