Deformation Capacity of Steel Shear Panel Damper and its Reflection to AIJ Design Requirements

Author:

Tamai Hiroyuki, ,Kasai Kazuhiko,

Abstract

Shear panel dampers consisting of stiffeners and panels surrounded by four flanges are used as aseismic hysteretic dampers for buildings in Japan. Cracks can form easily in a shear panel damper when shear buckling occurs during the cyclic loading caused by a severe earthquake.For a relatively thin panel with a large width-to-thickness ratio, the damper’s plastic deformation capacity and the presence of shear buckling can be evaluated from the maximum deformation angle. However, when it is relatively small, very-low-cycle fatigue life for a relatively thick panel must be known to predict the usage limit of the damper, because the failure pattern changes when cracks form in the weld between the panels and flanges. Fatigue life relations for a thick shear panel damper with parameters of normalized width-to-thickness ratio and deformation angle are presented. A method for predicting the fatigue life under severe earthquake conditions is also presented. To validate the prediction expression, cyclic loading tests were performed on a shear panel damper and reviewed. The applicability of the method for predicting the fatigue life was confirmed through non-stationary cyclic loading tests. These results showed the validity and effectiveness of the expressions and the method.

Publisher

Fuji Technology Press Ltd.

Subject

Engineering (miscellaneous),Safety, Risk, Reliability and Quality

Reference34 articles.

1. Architectural Institute of Japan, Subcommittee on Cyclic Loading Effect, “Cyclic Loading Effect and Fatigue Damage Due To Wind and Earthquake,” Symposium Text, 2004 (in Japanese).

2. Architectural Institute of Japan, “The Recommended Provision for Seismic Damping Systems Applied to Steel Structures,” Maruzen, 2014 (in Japanese).

3. P. Chusilp and T. Usami, “New Elastic Stability Formulas for Multiple-Stiffened Shear Panel,” Journal of Structural Engineering, ASCE, Vol.128, No.6, pp. 833-836, 2002.

4. T. Endo and H. Anzai, “Refined rain flow algorithm: P/V difference method,” J. Soc. Mat.Set. Japan, Vol.30, No.328, pp. 89-93, 1981 (in Japanese).

5. M. D. Engelhardt and E. P. Popov, “Experimental performance of long links in eccentrically braced frames,” Journal Structural Engineering, ASCE, Vol.118, No.1, pp. 3067-3088, 1992.

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