JNC-JAERI united research report. A study on degradation of structural materials under irradiation environment in nuclear reactors
Creators
- Hoshiya, Taiji1
- Takaya, Shigeru1
- Nagae, Yuji1
- Aoto, Kazumi1
- Abe, Yasuhiro1
- Nakamura, Yasuo1
- Ueno, Fumiyoshi2
- Nemoto, Yoshiyuki2
- Miwa, Yukio2
- Tsukada, Takashi2
- Ohmi, Masao3
- Saito, Junichi3
- Shimizu, Michio3
- Japan Atomic Energy Research Inst., Kashiwa, Chiba (Japan)
- Japan Nuclear Cycle Development Inst., Tokai, Ibaraki (Japan)
- 1. Japan Nuclear Cycle Development Inst., Oarai, Ibaraki (Japan). Oarai Engineering Center
- 2. Japan Atomic Energy Research Inst., Tokai, Ibaraki (Japan). Tokai Research Establishment
- 3. Japan Atomic Energy Research Inst., Oarai, Ibaraki (Japan). Oarai Research Establishment
Description
Japan Nuclear Cycle Development Institute (JNC) and Japan Atomic Energy Research Institute (JAERI) have started a JNC-JAERI united research program cooperatively in fiscal year 2003, which has been aimed for efficient progress and synergistic effect on the research activities of both Institutes in order to lead the facing task of unification between JNC and JAERI. This study has been chosen one of the united research themes because it has been common objective for both Institutes in the research field of structural materials such as Fast Breeder Reactor and Light Water Reactors components. The purpose of the study is to clarify damage mechanism of structural materials under irradiation, and then to develop the methods for damage evaluation and detection in earlier stage of progressing process of damage along grain boundaries. In fiscal year 2003, magnetic flux density distribution (JNC) and micro-corrosion (JAERI) measurement apparatus were newly developed and equipped in Hot Facilities in two Institutes, respectively. The former apparatus, supersensitive Flux Gate sensor was installed, could detector leaked magnetic flux from material damaged by neutron irradiation. The latter one, Atomic Force Microscope was installed, could detect grain boundary corrosion loss after an electrochemical corrosion test of irradiated material. These apparatus were designed and produced in consideration of radiation resistance and remote-controlled operation to equip in hot cells. As the results of preliminary studies using Ni ion irradiated specimen, damage detection by corrosion property in grain boundary was possible but magnetic property change could not detect. We will start the study on neutron irradiation damage by employing the two apparatus as the next step. (author)
Availability note (English)
Available from INIS in electronic form; Also available from JAEA; URL: http://jolisf.tokai-sc.jaea.go.jp/pdf/res/JAERI-Research-2004-016.pdfFiles
36116834.pdf
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Additional details
Publishing Information
- Imprint Pagination
- 66 p.
- Report number
- JAERI-Research--2004-016
INIS
- Country of Publication
- Japan
- Country of Input or Organization
- Japan
- INIS RN
- 36116834
- Subject category
- S36: MATERIALS SCIENCE; S22: GENERAL STUDIES OF NUCLEAR REACTORS;
- Descriptors DEI
- COORDINATED RESEARCH PROGRAMS; CORROSION; DAMAGE; EQUIPMENT; IRRADIATION; JAERI; JNC; MAGNETIC FLUX; MECHANICS; NICKEL IONS; PHYSICAL RADIATION EFFECTS; REACTOR MATERIALS
- Descriptors DEC
- CHARGED PARTICLES; CHEMICAL REACTIONS; IONS; JAPANESE ORGANIZATIONS; MATERIALS; NATIONAL ORGANIZATIONS; RADIATION EFFECTS; RESEARCH PROGRAMS
Optional Information
- Notes
- 19 refs., 35 figs., 4 tabs.; This record replaces 36061068
- Secondary number(s)
- JNC-TY--9400-2004-026