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Effect of transverse reinforcement on the seismic behavior of diagonally reinforced concrete coupling beams

机译:横向增强对对角钢筋混凝土耦合梁抗震性能的影响

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Coupled shear wall systems have been more popularly used in high-rise building construction in urban areas due to their efficiency in sustaining lateral loads as well as economic effectiveness. During earthquakes, coupling beams in the coupled wall system act as a seismic fuse element that dissipate most of seismic input energy exerted in the system. Diagonally reinforced concrete coupling beams (DRCBs) have been developed for this purpose. The objective of this study was to acquire test data of DRCBs of with different amount of transverse reinforcement and to evaluate the seismic behavior of these DRCBs. Quasi-static cyclic tests were conducted using seven DRCB specimens with different amounts of transverse reinforcement and different aspect ratios. Four specimens had L-n/h of 2.0, whereas it was 3.5 for the other three specimens. The shear strengths of individual specimens were compared to that calculated from the shear strength equation specified in ACI 318-14, and their deformation capacities were compared to those specified in ASCE 41-17. It is observed that the amount of transverse reinforcement in DRCBs played an important role in their shear strength and deformation capacities, indicating that the contribution of transverse reinforcement needs to be incorporated to ACI 318 shear strength equation and ASCE 41-17 model parameters.
机译:由于其在维持横向载荷以及经济效率方面,耦合剪力墙系统已经更广泛地用于城市地区的高层建筑施工。在地震期间,耦合壁系统中的耦合梁充当地震熔断器元件,其散发在系统中施加的大部分地震输入能量。为此目的开发了对角钢筋混凝土耦合梁(DRCBS)。本研究的目的是获得不同量的横向增强的DRCBS的测试数据,并评估这些DRCBS的地震行为。使用具有不同量的横向增强和不同纵横比进行的七种DRCB样品进行准静态循环试验。 4个样本具有2.0的L-N / H,而另外三种标本为3.5。将单个样本的剪切强度与来自ACI 318-14中规定的剪切强度方程计算的剪切强度进行了比较,并且将它们的变形能力与ASCE 41-17中规定的那些进行比较。观察到,DRCBS中的横向增强量在其剪切强度和变形容量中起着重要作用,表明横向增强的贡献需要掺入ACI 318剪切强度方程和ASCE 41-17模型参数。

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