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Experimental study of sliding friction damper with composite materials for earthquake resistant structures

机译:抗震结构复合材料滑动摩擦阻尼器的实验研究

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This paper presents the experimental results from 62 tests on five non-metallic friction pads that could be potentially used in friction dampers for minimizing earthquake-induced damage in buildings. The friction pads are composed of fibres and organic and inorganic fillers bounded together by phenolic resins and have never been explored for potential use in supplemental damping devices. A full-scale sliding friction damper prototype was developed for this purpose. Parameters examined as part of the experimental program include the applied pressure level to control the sliding force, the imposed loading protocol and the associated loading rate. The experimental results reveal that two of the explored friction pads exhibit similar static and dynamic friction coefficients, which are on the order of 0.2 and 0.3 regardless of the examined pressure level and loading protocol. These values are fairly invariant with respect to temperature and to sliding velocity as long as it is larger than 10 mm/s. While surface wear is the primary damage mechanism of the two most prominent friction pads, their immediate replacement is not imperative in typical earthquake mainshock-aftershock sequences. Moreover, loss of bolt pretension in the friction damper was practically negligible during the same loading sequences.
机译:本文介绍了对五种非金属摩擦垫的62次试验的实验结果,这些摩擦垫可能潜在地用于摩擦阻尼器,以使地震诱导的建筑物造成损坏。摩擦垫由酚醛树脂界定在一起的纤维和无机填料组成,并且从未被探索用于辅助阻尼装置的潜在使用。为此目的开发了一种全尺寸的滑动摩擦阻尼器原型。作为实验程序的一部分检查的参数包括施加的压力水平,以控制滑动力,强加的加载协议和相关的负载率。实验结果表明,两个探索摩擦垫具有类似的静态和动态摩擦系数,其大约为0.2和0.3,无论检查的压力水平和加载方案如何。这些值相对于温度和滑动速度相当不变,只要它大于10 mm / s即可。虽然表面磨损是两个最突出的摩擦垫的主要损伤机制,但它们的立即更换在典型的地震主轴 - 余震序列中并不是必不可少的。此外,在相同的加载序列期间,摩擦阻尼器中的螺栓预拉伸的损失几乎可以忽略不计。

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