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Theoretical study of the double concave friction pendulum system under variable vertical loading

机译:竖向荷载作用下双凹摩擦摆系统的理论研究

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摘要

The double concave friction pendulum system has been recognized as an efficient device for decreasing the seismic response of a structure during an earthquake excitation. Previous studies have focused mainly on the properties of the double concave friction pendulum system under constant vertical loading, and the width of the hysteretic loop changed by the vertical ground motion is less considered. In view of this, a theoretical study of the double concave friction pendulum system under variable vertical loading is conducted in this article. Meanwhile, the properties of the hysteretic loops of the double concave friction pendulum system with different friction coefficients between the articulated slider with the upper and lower sliding surfaces are investigated. The results show that the hysteretic loops of the double concave friction pendulum system will be affected by the variation of the vertical loading and the difference of the friction coefficients between the articulated slider with the upper and lower sliding surfaces.
机译:双凹摩擦摆系统已被公认为是在地震激发过程中降低结构的地震响应的有效装置。以前的研究主要集中在恒定载荷下的双凹摩擦摆系统的特性,而很少考虑由垂直地面运动改变的磁滞回线的宽度。有鉴于此,本文对可变载荷下的双凹摩擦摆系统进行了理论研究。同时,研究了具有上下滑动面的铰接滑块之间具有不同摩擦系数的双凹摩擦摆系统的磁滞回线特性。结果表明,双凹摩擦摆系统的磁滞回线将受到垂直载荷的变化以及上下滑动面的铰接滑块之间摩擦系数差异的影响。

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