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Cost-competitive hysteretic devices for seismic energy dissipation in steel bracings: experimental tests and low-cycle fatigue characterisation

机译:具有成本竞争力的滞后装置,用于钢支撑中的地震耗能:实验测试和低周疲劳特性

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This paper presents the results of experimental tests intended at investigating the behaviour of two cost competitive solutions for realising dissipative devices to be adopted as link elements in Y-shaped eccentric braces (EB), widely employed both for seismic protection of newly designed structures and retrofitting of existing ones. These structural components, generally referred to as Steel Slit Shape (SSS) and Short Link (SL) devices, were realised through standard welding and cutting procedures generally employed in steel workshops. Experimental tests with both constant and variable displacement amplitude protocols were carried out for observing the mechanical performance for these devices under cyclic actions. Since a fast degradation in shear strength was generally observed for all the tested specimens, a low-cycle fatigue was identified: it resulted that the same curve can be employed describing the number of cycles leading to low-fatigue failure for a given amplitude of the imposed cyclic displacement history. This curve is an essential tool for describing the behaviour of this devices that, although characterised by poorer mechanical performance under cyclic actions, have the potential to be utilised as dissipative components, for instance in Y-shaped steel bracings adopted for retrofitting reinforced concrete structures in medium-to-low seismic intensity area. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了旨在测试两种成本竞争解决方案的性能的实验测试结果,这些解决方案用于实现将耗散设备用作Y形偏心支架(EB)的链接元件,该设备广泛用于新建结构的地震防护和改造现有的。这些结构部件,通常称为钢缝形状(SSS)和短链节(SL)设备,是通过钢车间通常采用的标准焊接和切割程序实现的。进行了具有恒定和可变位移幅度协议的实验测试,以观察这些设备在循环作用下的机械性能。由于通常在所有测试样品中均观察到剪切强度快速下降,因此确定了低周疲劳:其结果是,可以使用相同的曲线描述在给定振幅下导致低疲劳破坏的循环次数。施加循环位移历史。该曲线是描述该设备性能的重要工具,尽管其特点是在循环作用下机械性能较差,但仍有潜力用作耗散组件,例如在用于加固钢筋混凝土结构的Y型钢支架中。中低地震烈度区。 (C)2016 Elsevier Ltd.保留所有权利。

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