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Dive into the research topics where Masayoshi Ikenaga is active.

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Journal of Pressure Vessel Technology-transactions of The Asme | 2004

Motion Analysis of Pendulum-Type Isolation Systems During Earthquakes: Dynamic Test and Response Analysis on a Three Story Steel Frame Model Supported by Four Friction Pendulum Bearings

Shigeki Okamura; Satoshi Fujita; Masayoshi Ikenaga

After the Hanshin-Awaji Earthquake Disaster, the number of earthquake isolated buildings is increasing. Most of the base isolated buildings or structures are built on laminated rubber bearings in order to give them certain natural periods. This situation, however, also encourages structural engineers to research and develop nonrubber-type isolation systems such as linear motion bearing isolators and friction pendulum systems. It is considered that the nonrubber-type isolation systems can be applied to important industrial facilities, such as LNG tanks, boiler facilities and so on to refine their seismic reliabilities. In the device of the nonrubber-type isolation systems, the device which applied the sliding is especially noticed. However, when using nonrubber-type isolation systems with sliding in the open air circumstances, long term durability of the systems must be taken into account and it may be very difficult to maintain the friction coefficient of the system. In this study, the dynamic motion analysis and the experimental tests on the isolated structure mounted on four Friction Pendulum Bearing (FPB) Systems were carried out to investigate the performance of isolation due to the rotational motion which might be induced by the friction force difference in FPB system.


Archive | 1991

Seismic isolating bearing

Ikuo Shimoda; Masayoshi Ikenaga; Kouske Sasaki


Archive | 1999

Locking device for base isolating structure

Teruo Aramizu; Shigeo Fujio; Osamu Hasegawa; Masayoshi Ikenaga; 雅良 池永; 照夫 荒水; 重雄 藤生; 治 長谷川


Archive | 1995

LAMINATED RUBBER SUPPORT STRUCTURE

Masayoshi Ikenaga; Ikuo Shimoda; 郁夫 下田; 雅良 池永


Archive | 1994

Method of detecting a change in the property of a rubber member

Yoshinao Okawa; Youichi Akutsu; Ikuo Shimoda; Masayoshi Ikenaga


Archive | 1993

A SEISMIC ISOLATING BEARING WITH LEAD BLOCK IN CENTRAL HOLE

Ikuo Shimoda; Masayoshi Ikenaga; Kouske Sasaki


Summaries of technical papers of Annual Meeting Architectural Institute of Japan. B-2, Structures II, Structural dynamics nuclear power plants | 2003

21325 Shaking Table Test of Frame Model with Active Mass Damper for Slender Houses : Part2 Test Results

Mitsuru Miyazaki; Shuhei Kaneko; Masayoshi Ikenaga; Takafumi Fujita


Transactions of the Japan Society of Mechanical Engineers. C | 2002

摩擦振り子型免震装置群の地震時挙動に関する研究 : 第2報,3層鉄骨フレームモデルを用いた振動実験(機械力学,計測,自動制御)

Shigeki Okamura; Satoshi Fujita; Teruo Aramizu; Masayoshi Ikenaga; Kunio Hayakawa; Hidetaka Funaki


The proceedings of the JSME annual meeting | 2001

F-1010 Study on Motion Analysis of Pendulum Isolation Systems During Earthquakes : Shake Table Test Using 3-storey Steal-Frame Model : Part 1

Shigeki Okamura; Satoshi Fujita; Teruo Aramizu; Masayoshi Ikenaga; Kunio Hayakawa; Hidetaka Funaki


Archive | 1994

Verfahren zum nachweis von verschlimmerung eines gummiauflagers A method for detecting an aggravation gummiauflagers

Youichi Akutsu; Masayoshi Ikenaga; Yoshinao Okawa; Ikuo Shimoda

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Ikuo Shimoda

Japan Atomic Energy Research Institute

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