EXPERIMENTAL ANALYSIS OF STEEL DISSIPATIVE BRACING SYSTEMS FOR SEISMIC UPGRADING

Author:

Mazzolani Federico M.1,Corte Gaetano Della1,D’Aniello Mario1

Affiliation:

1. University of Naples “Federico II”, Dept of Structural Engineering, p.le Tecchio, 80 – 80125 Naples, Italy

Abstract

Energy dissipating devices, such as metallic ductile dampers, could represent one reliable system for seismic performance upgrading of reinforced concrete (RC) structures. This paper illustrates the significant improvement to the seismic response of RC structures equipped with dissipative bracing systems, such as eccentric braces (EBs) and buckling restrained braces (BRBs). In fact, the results of experimental tests carried out on two similar two‐storey one‐bay RC structures, respectively equipped with EBs and BRBs, are described. Referring to EBs, 3 lateral loading tests have been performed. Each test is characterized by shear links with bolted end‐plate connections. Different design criteria have been applied in the design of the connections. In the first test, capacity design criteria have not been considered. In the second test, a capacity design criterion has been applied, with a link shear over‐strength factor equal to 1.5. In the third test, a design criterion similar to the one adopted for the second test has been implemented, but with a larger over‐strength factor. In case of BRBs, two types of ‘only‐steel’ braces have been tested: one type was made using two buckling‐restraining rectangular tubes that are fully welded together with steel plates; the other type is detachable, being made again with two buckling‐restraining rectangular tubes but joined together by means of bolted steel connections. In both cases, the internal yielding core was a rectangular steel plate. The experimental results of both bracing systems are encouraging about the possibility to use these devices for improving the seismic resistance of existing RC structures. Santrauka Didinant gelžbetoninių pastatų atsparumą seisminiams poveikiams, gali būti naudojami energiją sugeriantys metaliniai slopintuvai. Straipsnyje parodoma, kaip tokios slopinančios sistemos, kaip necentriniai ryšiai ir klupimą suvaržantys ryšiai, gali iš esmės gerinti pastato seisminę elgseną. Pateikiami dviejų panašių vienos angos gelžbetoninių pastatų su minėtaisiais ryšiais eksperimentiniai tyrimų rezultatai. Tyrimai parodė, kad abi suvaržymo sistemos gerina eksploatuojamų gelžbetoninių pastatų atsparumą seisminiams poveikiams.

Publisher

Vilnius Gediminas Technical University

Subject

Strategy and Management,Civil and Structural Engineering

Reference35 articles.

1. PEER Report 2002/08;Black C.,2002

2. Carden, L., Itani, A., Buckle, I. and Aiken, I. Buckling restrained braces for ductile end cross frames in steel plate girder bridges. Proceedings of the 13th World Conference on Earthquake Engineering. Vancouver, Canada.

3. Clark, W., Kasai, K., Aiken, I. D. and Kimura, I. Evaluation of design methodologies for structures incorporating steel unbonded braces for energy dissipation. Proceedings of the 12th World Conference on Earthquake Engineering. Auckland, New Zealand. Paper No. 2240, CD‐ROM

4. D'Aniello, M., Della Corte, G. and Mazzolani, F.M. Seismic upgrading of RC buildings using eccentric braces: full‐scale experimental tests. XX C. T.A. Conference ‐ First Int. Workshop on advances in steel constructions. Ischia, Italy.

5. D'Aniello, M., Della Corte, G. and Mazzolani, F. M. Seismic upgrading of RC buildings by steel eccentric braces: experimental results vs numerical modeling. Proceedings of Fifth International Conference on Behavior of Steel Structures in Seismic Areas (STESSA 2006). Yokohama, Japan.

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