JOURNAL ARTICLE

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

Fangyuan ZhouWeilin XiangKun YeHongping Zhu

Year: 2019 Journal:   Advances in Structural Engineering Vol: 22 (8)Pages: 1998-2005   Publisher: SAGE Publishing

Abstract

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.

Keywords:
Slider Pendulum Double pendulum Mechanics Double inverted pendulum Constant (computer programming) Inverted pendulum Structural engineering Materials science Physics Control theory (sociology) Engineering Nonlinear system Computer science Mechanical engineering

Metrics

7
Cited By
0.78
FWCI (Field Weighted Citation Impact)
17
Refs
0.73
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Seismic Performance and Analysis
Physical Sciences →  Engineering →  Civil and Structural Engineering
Vibration and Dynamic Analysis
Physical Sciences →  Engineering →  Control and Systems Engineering
Vibration Control and Rheological Fluids
Physical Sciences →  Engineering →  Civil and Structural Engineering

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