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Friction between a new low-steel composite material and milled steel for SAFE Dampers

机译:新型低钢复合材料与SAFE阻尼器用磨钢之间的摩擦

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This paper describes the development process of a new low-steel composite friction material and the experiments to investigate its frictional behavior. Automotive braking technology was adapted to derive an optimal friction damper for buildings, and a high friction coefficient and stable behavior were set as the primary targets for performance. To improve performance, clamping details which incorporated load washers were also proposed. In order to evaluate the performance of the friction system, pseudo-dynamic tests were conducted. In the experiments, the proposed friction dampers showed repeatable, predictable, and very stable behavior without significant fading of frictional resistance, even under hundreds of repetitive sliding excursions. The friction load tended to be proportional to the initial clamping force regardless of the real-time clamping force, thus confirming that the behavior of the proposed dampers could be predicted using the idealized Coulomb friction model. It was also verified that frictional performance could be remarkably increased through the use of conical shaped load washers, when applied correctly. Furthermore, nonlinear time history analysis was performed on a five-story example building with and without friction dampers. Based on the results, the friction damped system demonstrated effectiveness in reducing structural responses such as roof displacement, base shear force, and story drift ratio compared to the original undamped frame system. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种新型的低钢复合摩擦材料的开发过程以及研究其摩擦性能的实验。汽车制动技术适用于为建筑物推导最佳摩擦阻尼器,并且将高摩擦系数和稳定的性能设置为性能的主要目标。为了提高性能,还提出了结合了负载垫圈的夹紧细节。为了评估摩擦系统的性能,进行了拟动力试验。在实验中,即使在数百次重复的滑动偏移下,所提出的摩擦阻尼器也表现出可重复,可预测且非常稳定的性能,而摩擦阻力却没有明显下降。无论实时夹紧力如何,摩擦载荷都倾向于与初始夹紧力成比例,因此证实了可以使用理想化的库仑摩擦模型来预测所提出的减振器的性能。还证实了,如果正确使用圆锥形的载荷垫圈,可以显着提高摩擦性能。此外,在有和没有摩擦阻尼器的五层示例建筑上进行了非线性时程分析。根据结果​​,与原始的无阻尼框架系统相比,摩擦阻尼系统在减少结构响应(例如屋顶位移,基础剪力和楼层偏移率)方面显示出了有效性。 (C)2016 Elsevier Ltd.保留所有权利。

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