Aseismic Test and Finite Element Analysis of Light-Weight Steel Portal Frame with Tapered Members

Author:

Wang Zhen Shan1,Su Ming Zhou1,Song An Liang2,Pang Zhen1,Shen Lin3

Affiliation:

1. Xi'an Architectural Design and Research Institute

2. Xi'an University of Architecture and Technology

3. China Institute of Building Standard Design and Research

Abstract

To study on the failure model, ductility, energy dissipation capacity, structural displacement, and stiffness of the portal frame structures on the effect of earthquake force, a pseudo-static experiment with a 1/3 scaled model has been completed. Based on the test result, though the ductility and the energy consumption capacity of the structure are poor, the requirement on aseismatic bearing capacity is satisfied, because the structure suffers the smaller seismic force as the deadweight of structure is light. Built up a finite element model according to the test specimen, then performed finite element analysis, the results showed that the finite element model can be used for seismic analysis of the portal frame.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference6 articles.

1. Hwang J. S, Chang K. C, Lee G. C, Ketter R.L. Shaking table tests of Pinned-base steel gable frame [J]. Journal of Structural Engineering, 1989, (12): 3031-3043.

2. Hwang J. S, Chang K. C, Lee G.C. Seismic behavior of gable frame consisting of tapered members[J]. Journal of Structural Engineering, 1991, 117(3): 808-821.

3. Hong Jong–Kook. Development of A Seismic Design Procedure for Metal Building Systems[D]. University of California, San Diego, (2007).

4. Xu Yong, Chen Yiyi, et al. Experimental research on hysteretic behavior of light-weight steel portal frame [J]. Journal of Building Structures, 2010, 31 (10): 76 —82. (In Chinese).

5. Technical specification for steel structure of light -weight building with gabled frames (CECS 102: 2002) [S]. Beijing: China Planning Press, 2004. (In Chinese).

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