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Study on environmental durability of rubber bearing for bridges伊藤, 義人, Itoh, Yoshito, Yazawa, Akio, 北川, 徹哉, Kitagawa, Tetsuya, 貝沼, 重信, Kainuma, Shigenobu, 山本, 吉久, Yamamoto, Yoshihisa, Kutsuna, Yukihiro 09 1900 (has links)
No description available.
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橋梁用天然ゴム支承の性能劣化特性に関する研究伊藤, 義人, Itoh, Yoshito, 顧, 浩声, Gu, Haosheng, 佐藤, 和也, Satoh, Kazuya, 山本, 吉久, Yamamoto, Yoshihisa 04 1900 (has links)
No description available.
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Long-term Deterioration of High Damping Rubber Bridge BearingItoh, Yoshito, Gu, Haosheng, Satoh, Kazuya, Yamamoto, Yoshihisa 07 1900 (has links)
No description available.
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Seismic Response of Steel Bridge Piers with Aged Base-Isolated Rubber BearingGu, Haosheng, Itoh, Yoshito 03 1900 (has links)
No description available.
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EXPERIMENTAL INVESTIGATION ON AGEING BEHAVIORS OF RUBBERS USED FOR BRIDGE BEARINGSITOH, Yoshito, GU, Haosheng, SATOH, Kazuya, KUTSUNA, Yukihiro, 伊藤, 義人, 顧, 浩声, 佐藤, 和也, 忽那, 幸浩 01 1900 (has links)
No description available.
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Long-term performance of rubber bearing considering solar radiation effectItoh, Yoshito, Kitane, Yasuo, Paramashanti 01 August 2010 (has links)
No description available.
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Performance Evaluation of a Base-Isolated Bridge with Aged Rubber BearingsItoh, Yoshito, Kitane, Yasuo, Paramashanti 07 1900 (has links)
The 7th German-Japanese Bridge Symposium, July 30-August 1, 2007 Osaka, JAPAN (GJBS07), full paper + extended abstract (p.84-85)
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Temperature Measurement of a Bridge Rubber Bearing Exposed to Solar Radiation for Long-Term Performance EvaluationItoh, Y., Paramashanti, Kitane, Y. January 2008 (has links)
No description available.
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Effect of Rubber Bearing Ageing on Seismic Response of Base-Isolated Steel BridgesGu, Haosheng, 伊藤, 義人, Itoh, Yoshito, 佐藤, 和也, Satoh, Kazuya 06 1900 (has links)
No description available.
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Advanced Models for Sliding Seismic Isolation and Applications for Typical Multi-Span Highway BridgesEroz, Murat 14 November 2007 (has links)
The large number of bridge collapses that have occurred in recent earthquakes has exposed the vulnerabilities in existing bridges. One of the emerging tools for protecting bridges from the damaging effects of earthquakes is the use of isolation systems. Seismic isolation is achieved via inserting flexible isolator elements into the bridge that shift the vibration period and increase energy dissipation. To date, the structural performance of bridges incorporating sliding seismic isolation is not well-understood, in part due to the lack of adequate models that can account for the complex behavior of the isolators. This study investigates and makes recommendations on the structural performance of bridges utilizing sliding type seismic isolators, based on the development of state-of-the-art analytical models. Unlike previous models, these models can account simultaneously for the variation in the normal force and friction coefficient, large deformation effects, and the coupling of the vertical and horizontal response during motion. The intention is to provide support for seismic risk mitigation and insight for the analysis and design of seismically isolated bridges by quantifying response characteristics. The level of accuracy required for isolator analytical models used in typical highway bridges are assessed. The comparative viability of the two main isolator types (i.e. sliding and elastomeric) for bridges is investigated. The influence of bridge and sliding isolator design parameters on the system s seismic response is illustrated.
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