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Energy dissipation characteristics of steel coupling beams with corrugated webs

机译:波纹腹板钢耦合梁的耗能特性

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Steel coupling beams are considered as an efficient alternative to reinforced concrete coupling beams in coupled shear wall systems. The application of corrugated webs as an alternative to flat webs with stiffeners in steel coupling beams has been lately proposed and its effective role in improving the ultimate rotation capacity of such beams has been demonstrated in published studies. However, the energy absorption characteristics of corrugated-web steel coupling beams have not been investigated. In this paper, the energy dissipation characteristics as well as cyclic performance of steel coupling beams with flat and corrugated webs are investigated through detailed numerical simulations. To this end and following the validation of the numerical simulation, numerous finite element models have been developed based on several key parameters including the flat, trapezoidal, curved, and zigzag web-plate corrugation forms, web thickness, number of corrugation half-waves, and corrugation angle. In addition to the advantages of application of corrugated webs in eliminating the web stiffeners and improving the ultimate rotation capacity in steel coupling beams, results and findings of this study demonstrate that corrugated-web steel coupling beams possess appropriate energy absorption characteristics and are capable of dissipating the input energy in a quite desirable and efficient manner. Moreover, it is shown that the energy dissipation capabilities of such coupling beams can be effectively improved via efficient design and proper adjustment of corrugation parameters.
机译:在耦合剪力墙系统中,钢制耦合梁被认为是钢筋混凝土耦合梁的有效替代方案。最近已经提出了在钢制连接梁中使用波形腹板替代具有加强筋的扁平腹板的方法,并且在已发表的研究中已证明了其在提高此类梁的极限旋转能力方面的有效作用。但是,尚未研究波纹腹板钢耦合梁的能量吸收特性。通过详细的数值模拟,研究了扁平和波纹腹板钢耦合梁的能量耗散特性以及循环性能。为此,在验证了数值模拟之后,已基于几个关键参数开发了许多有限元模型,包括平坦,梯形,弯曲和锯齿形的腹板波纹形式,腹板厚度,波纹半波数,和波纹角。除了使用波纹腹板在消除腹板中的加强筋和提高钢连接梁的极限旋转能力方面的优势外,本研究的结果和发现还表明,波纹腹板钢耦合梁具有适当的能量吸收特性并且能够消散以非常理想和有效的方式输入能量。此外,表明通过有效的设计和适当地调整波纹参数可以有效地改善这种耦合梁的能量消耗能力。

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