Development of Structural Metal Energy-Dissipation Techniques for Seismic Disaster Mitigation of Buildings in China

Author:

Li Guo Qiang1,Jin Hua Jian1,Pang Meng De1,Li Yan Wen1,Sun Ying Zhi1,Sun Fei Fei1

Affiliation:

1. Tongji University

Abstract

Buildings in seismic zones are required to provide proper stiffness and load-bearing capacity to resist frequent earthquakes, and possess proper ductility and energy-dissipating capacity to prevent collapse under rare earthquakes. To meet these requirements, the concept of structural energy-dissipation techniques for the bi-functions of load-bearing and energy dissipating are proposed. A number of structural metal energy-dissipation elements, such as buckling-restrained steel plate shear walls, non-buckling corrugated steel plate shear walls, two-level yielding steel coupling beams and energy-dissipative columns, have been developed. They are designed to provide stiffness/strength to guarantee the operation of buildings under frequent earthquakes, but also dissipate energy to reduce seismic effects to a considerable extent for collapse-prevention of buildings. The experimental and theoretical studies on these structural metal energy-dissipating dampers are presented. The efficiency of these structural dampers for disaster mitigation of buildings against earthquakes are also presented to provide a reference for their practical application.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference40 articles.

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3. Gao J, Xue Y T, Wang L, et al., Experimental study on JY-SS- type metal damper, Journal of civil engineering and management(in Chinese), 28(3): 336-338, (2011).

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5. Zhang Z, Ou J P, Li D, et al., Optimization Design of Coupling Beam Metal Damper in Shear Wall Structures, Applied Sciences, 7(2): 137, (2017).

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