Development of Controlled Temperature-Cycle Irradiation Technique in JMTR
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概要
- 論文の詳細を見る
The effects of cyclic temperature changes during neutron irradiation upon radiation induced microstructure evolution and resulting property changes of materials is very important from both fundamental and engineering viewpoints. Therefore, a technique that allows us to do the controlled temperature-cycle irradiation was developed in the Japan Materials Testing Reactor (JMTR). The technique meets the following requirements : (1) the temperature-cycle irradiation is to be performed under three different conditions by changing lower and upper temperatures; 200 --- 400℃, 300 --- 400℃ and 300 --- 450℃. (2) the number and period of the temperature-cycles are to be six for 24-day full irradiation and approximately 44 h/44 h at the lower/upper temperatures. (3) the temperatures of each specimen assembly are to be maintained at the lower temperatures before start-up of the reactor and at the upper temperatures during shut-down until the complete absence of reactor power. In this paper, the details of the irradiation rig, successful results and several problems to be overcome for future improvement are presented.neutron irradiationtemperature cycleJMTRirradiation rig
- 東北大学の論文
- 1994-09-16
著者
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YOSHIDA Naoaki
Research Institute for Applied Mechanics, Kyushu University
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栗下 裕明
International Res. Center For Nuclear Materials Sci. Inst. For Materials Res. Tohoku Univ.
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Kurishita Hiroaki
International Research Center For Nuclear Materials Science Institute For Materials Research Tohoku
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Kurishita Hiroaki
The Oarai Branch Institute For Materials Research Tohoku University
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栗下 裕明
東北大学金属材料研究所
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Narui M
The Oarai Branch Institute For Materials Research Tohoku University
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Narui Minoru
The Oarai Branch Institute For Materials Research Tohoku University
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Yoshida Naoaki
Research Institute For Applied Mechanics Kyushu University
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Narui Minoru
The Oarai Branch Institute For Material Research Tohoku University
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KAYANO Hideo
The Oarai Branch, Institute for Materials Research, Tohoku University
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SAGAWA Tsutomu
The Oarai Research Establishment, Japan Atomic Energy Research Institute
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KIRITANI Michio
Department of Nuclear Engineering, School of Engineering, Nagoya University
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SHIKAMA Tatsuo
Institute for Materials Research, Tohoku University
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Kayano Hideo
The Oarai Branch Institute For Materials Reseach Tohoku University
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Shikama T
The Oarai Branch Institute For Materials Research Tohoku University
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Sagawa Tsutomu
Oarai Research Establishment Japan Atomic Energy Research Institute
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Kiritani M
Department Of Electronic Engineering Hiroshima Institute Of Technology
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Kiritani Michio
Department Of Electrnics Hiroshima Institute Of Technology
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