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Seismic behavior of interior RC beam-column joints with additional bars under cyclic loading

机译:循环荷载作用下带附加钢筋的钢筋混凝土内部梁柱节点的抗震性能

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摘要

The behavior of beam-column joints in moment resisting frame structures is susceptible to damage caused by seismic effects due to poor performance of the joints. A good number of researches were carried out to understand the complex mechanism of RC joints considered in current seismic design codes. The traditional construction detailing of transverse reinforcement has resulted in serious joint failures during earthquakes. This paper introduces a new design philosophy involving the use of additional diagonal bars within the joint particularly suitable for low to medium seismic effects in earthquake zones. In this study, ten full-scale interior beam-column specimens were constructed with various additional reinforcement details and configurations. The results of the experiment showed that adding additional bars is a promising approach in reinforced concrete strictures where earthquakes are eminent. In terms of overall cracking observation during the test, the specimens with additional bars (diagonal and straight) compared with the ones without them showed fewer cracks in the column. Furthermore, concrete confinement is certainly an important design measure as recommended by most international codes.
机译:在抗弯框架结构中,梁柱节点的性能容易受到地震效应的损害,原因是节点的性能较差。进行了大量研究以了解当前抗震设计规范中考虑的RC接头的复杂机理。传统的横向钢筋施工细节导致地震期间严重的接头破坏。本文介绍了一种新的设计理念,其中涉及在接头内使用额外的斜杆,特别适用于地震带中的中低地震效应。在这项研究中,构建了十个全尺寸的内部梁柱标本,并带有各种附加的钢筋细节和配置。实验结果表明,在发生地震的钢筋混凝土结构中,增加钢筋是一种很有前途的方法。在测试过程中观察到的整体裂纹方面,与没有试条的样品(没有对角线和直条)相比,柱子上的裂纹更少。此外,正如大多数国际法规所建议的那样,混凝土限制当然是一项重要的设计措施。

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