Proposal and application of structural soundness monitoring system for the buckling‐restrained brace using steel mortar planks

Author:

Fujita Masanori1,Awazu Kengo1,Nakamura Makoto1,Yamasaki Kokoro2,Iwata Mamoru3

Affiliation:

1. Kanagawa University Faculty of Architecture and Building Engineering Yokohama Kanagawa 221-8686 Japan

2. Informedia 1-9-41 Ekimaechuo Saga 840-0801 Japan

3. Kanagawa University Yokohama Kanagawa 221-8686 Japan

Abstract

AbstractA structural soundness monitoring system for building steel structures is effective for a quick inspection just after large earthquakes. A damage‐controlled structure can be monitored effectively because damage is strictly concentrated in energy‐absorbed members, and that, in this case, the physical quantity suitable for monitoring is displacements of those energy absorbed members. Buckling‐restrained braces (also, the BRB using steel mortar planks, BRBSM), one of the energy‐absorption members, can be directly monitored by the monitoring sensor; it will be possible to quickly evaluate the extent of damage and make a prompt decision on the replacement. Focusing on functionality of a structural soundness monitoring system, a damage evaluation method of the BRB using steel mortar planks and its corresponding monitoring system are verified conducting by a cyclic loading test. It is demonstrated that the cumulative plastic strain energy can be estimated approximately using this system, and this system is adapted to a mid‐rise steel building.

Publisher

Wiley

Subject

Metals and Alloys,Mechanics of Materials,Building and Construction,Civil and Structural Engineering

Reference29 articles.

1. Architectural Institute of Japan (2014)Recommended provisions for seismic damping system applied to steel structures. Tokyo: Maruzen.

2. Architectural Institute of Japan (2008)Structural committee. Safe and secure building spaces created by structural soundness monitoring. Tokyo: AIJ.

3. Architectural Institute of Japan (2012)Structural committee. Role of strong-motion observation and monitoring technologies in disasters. Tokyo: AIJ.

4. Architectural Institute of Japan (2016)Structural committee. Strong motion observations and monitoring technologies for future large earthquakes. Tokyo: AIJ.

5. Lynch J. P.; Loh K. J. (2006)A Summary Review of Wireless Sensors and Sensor Networks for Structural Health Monitoring. The Shock and Vibration Digest 38 No. 2 pp. 91–128.

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