RESPONSE ANALYSIS METHOD CONSIDERING HEAT-MECHANICS INTERACTION BEHAVIOR OF LEAD RUBBER BEARINGS
Author:
Affiliation:
1. Architectural Design Division, Kajima Corp.
2. Kobori Research Complex Inc.
3. Building Construction Management Division, Kajima Corp.
4. Kajima Technical Research Institute, Kajima Corp.
5. Dept. of Architecture, Tokyo Univ. of Science
Publisher
Architectural Institute of Japan
Subject
Building and Construction,Architecture
Link
https://www.jstage.jst.go.jp/article/aijs/83/753/83_1595/_pdf
Reference7 articles.
1. 1) Yasuo TAKENAKA, Akihiro KONDO et al : EXPERIMENTAL STUDY ON HEAT-MECHANICS INTERACTION BEHAVIOR OF LAMINATED RUBBER BEARINGS, Journal of Structural and Construction Engineering (Transactions of AIJ), Vol. 74, No. 646, pp. 2245-2253, 2009.12 (in Japanese)
2. 3) Mineo Takayama, et al. : Durability of Rubber Isolators by Long-Duration Ground Motion due to Large Earthquakes, 14th World Conference on Earthquake Engineering, Oct12-17, 2008, Beijing, China
3. 5) Ioannis V. Kalpakidis et al : Modeling strength degradation in lead-rubber bearings under earthquake shaking, EARTHQUAKE ENGINEERING AND STRUCTURAL DYNAMICS 39, 1533-1549, September 2010
4. 6) Ioannis V. Kalpakidis et al : Principles of scaling and similarity for testing of lead-rubber bearings, EARTHQUAKE ENGINEERING AND STRUCTURAL DYNAMICS 39, 1551-1568, September 2010
5. 7) Akitsugu MURAMATSU et al : CYCLIC LOADING EXPERIMENT ON LEAD RUBBER BEARING WITH LARGE DIAMETER LEAD PLUG, AIJ Journal of Technology and Design, Vol. 22, No52, pp. 987-992, 2016.10 (in Japanese)
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3. Proposal of deformation history integral‐type hysteresis model considering performance change of high‐damping rubber bearings and verification using substructure real‐time online testing system for seismically isolated structure;JAPAN ARCHITECTURAL REVIEW;2023-01
4. PROPOSAL OF DEFORMATION HISTORY INTEGRAL TYPE HYSTERESIS MODEL CONSIDERING PERFORMANCE CHANGE OF HIGH-DAMPING RUBBER BEARINGS AND VERIFICATION USING SUBSTRUCTURE REAL-TIME ONLINE TESTING SYSTEM FOR SEISMICALLY ISOLATED STRUCTURE;Journal of Structural and Construction Engineering (Transactions of AIJ);2022-09-01
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