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Experimental behaviour of innovative thermal spray coating materials for FREEDAM joints

机译:FREEDAM接头创新的热喷涂材料的实验行为

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This paper presents the results of an experimental activity performed within the FREEDAM project, which is a project granted by the European Community devoted to the development of a new design strategy, for structures in seismic zone, based on the application of friction dampers in connections. In this work the attention is focused on the selection of materials to be employed as friction pads in FREEDAM joints, providing alternative solutions based on the application by means of thermal spray techniques of carbides and of metallic or intermetallic materials on steel plates. To date, twelve tests on eight different coating materials combined with stainless steel plates have been realized. The tests performed until now, which are mainly devoted to evaluate the behaviour of the friction interfaces in terms of static and kinetic friction coefficient and in terms of degradation, are inspired to the sliding test proposed by EN1090-2 adopting the loading protocol suggested by the EN12159 for the qualification, of seismic devices. The initial value of the friction coefficient and its evolution during the tests, have been determined for the different materials by monitoring the values of the forces of the bolts used to apply the pre-load to the friction interface and the value of the sliding force. The obtained results are presented both in terms of force-displacement curves and in terms of friction coefficient, providing a comparison between the performances of the analysed interfaces in terms of energy dissipation supply. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了FREEDAM项目中进行的一项实验活动的结果,FREEDAM项目是由欧洲共同体授予的一个项目,其目的是基于连接中的摩擦阻尼器的应用,为地震带中的结构开发新的设计策略。在这项工作中,注意力集中在选择FREEDAM接头中用作摩擦垫的材料上,基于通过碳化物和钢板上金属或金属间材料的热喷涂技术的应用,提供了替代解决方案。迄今为止,已经实现了对八种不同涂层材料与不锈钢板结合的十二项测试。迄今为止进行的测试主要用于评估静摩擦和动摩擦系数以及退化方面的摩擦界面行为,这启发了EN1090-2提出的滑动测试,采用了建议的加载方案。 EN12159,用于鉴定地震设备。通过监测用于将预载荷施加到摩擦界面的螺栓力值和滑动力值,可以确定不同材料的摩擦系数的初始值及其在测试过程中的变化。所获得的结果以力-位移曲线和摩擦系数的形式给出,从而在能量消耗供应方面对所分析界面的性能进行了比较。 (C)2016 Elsevier Ltd.保留所有权利。

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