TY - GEN
T1 - Shaking table test study on mid-story isolation structures
AU - Jin, Jianmin
AU - Tan, Ping
AU - Zhou, Fulin
AU - Ma, Yuhong
AU - Shen, Chaoyong
PY - 2012
Y1 - 2012
N2 - Mid-story isolation structure is developing from base isolation structures. As a complex structural system, the work mechanism of base isolation structure is not entirely appropriate for mid-story isolation structure, and the prolonging of structural natural period may not be able to decrease the seismic response of substructure and superstructure simultaneously. In this paper, for a four-story steel frame model, whose prototype first natural period is about 1s without seismic isolation design, the seismic responses and isolation effectiveness of mid-story isolation system with lead rubber bearing are studied experimentally by changing the location of isolation layer. Respectively, the locations of isolation layer are set at bottom of the first story, top of the first story, top of the second story and top of the third story. The results show that mid-story isolation can reduce seismic response in general, and substructure acceleration may be amplified.
AB - Mid-story isolation structure is developing from base isolation structures. As a complex structural system, the work mechanism of base isolation structure is not entirely appropriate for mid-story isolation structure, and the prolonging of structural natural period may not be able to decrease the seismic response of substructure and superstructure simultaneously. In this paper, for a four-story steel frame model, whose prototype first natural period is about 1s without seismic isolation design, the seismic responses and isolation effectiveness of mid-story isolation system with lead rubber bearing are studied experimentally by changing the location of isolation layer. Respectively, the locations of isolation layer are set at bottom of the first story, top of the first story, top of the second story and top of the third story. The results show that mid-story isolation can reduce seismic response in general, and substructure acceleration may be amplified.
KW - Lead rubber bearing
KW - Mid-story isolation
KW - Shaking table test
UR - https://www.scopus.com/pages/publications/84863157357
U2 - 10.4028/www.scientific.net/AMR.446-449.378
DO - 10.4028/www.scientific.net/AMR.446-449.378
M3 - 会议稿件
AN - SCOPUS:84863157357
SN - 9783037853474
T3 - Advanced Materials Research
SP - 378
EP - 381
BT - Trends in Civil Engineering
T2 - 2nd International Conference on Structures and Building Materials, ICSBM 2012
Y2 - 9 March 2012 through 11 March 2012
ER -