Structural Engineering and Mechanics
Volume 40, Number 2, 2011, pages 167-190
DOI: 10.12989/sem.2011.40.2.167
Characterization and shaking table tests of multiple trench friction pendulum system with numerous intermediate sliding plates
C.S. Tsai and Yung-Chang Lin
Abstract
In order to upgrade the seismic resistibility of structures and enhance the functionality of an isolator, a new base isolator called the multiple trench friction pendulum system (MTFPS) is proposed in this study. The proposed MTFPS isolator is composed of a trench concave surface and several intermediate sliding plates in two orthogonal directions. Mathematical formulations have been derived to
examine the characteristics of the proposed MTFPS isolator possessing numerous intermediate sliding plates. By means of mathematical formulations which have been validated by experimental results of bidirectional ground shaking, it can be inferred that the natural period and damping effect of the MTFPS isolator with several intermediate sliding plates can be altered continually and controllably during
earthquakes. Furthermore, results obtained from the component and shaking table tests demonstrate that
the proposed isolator provides good protection to structures for prevention of damage from strong earthquakes.
Key Words
friction pendulum system; multiple friction pendulum system; base isolation; earthquake engineering; base isolator; trench friction pendulum system; sliding system
Address
C.S. Tsai and Yung-Chang Lin: Department of Civil Engineering, Feng Chia University, Taichung, Taiwan