Hardening by Point Defects in Neutron Irradiated AIN and SiC.
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概要
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Pressureless-sintered AlN and hot-pressed, pressureless-sintered and reaction-bonded SiC were neutron irradiated at temperatures between 100 and 785°C up to a fluence of 5.2X10<SUP>34</SUP> n/m<SUP>2</SUP>. The hardness was increased by up to 51% in AlN and 84% in SiC, The hardness decreased after annealing at temperatures around the irradiation temperature. At the same temperatures, the macroscopic length, which was increased by irradiation, also began to decrease. The hardness and length were almost recovered after 1, 2001, 400°C annealing. Thus, hardening in irradiated AlN and SiC is controlled by the number of point defects, or, more precisely, by the strain caused by small point defect clusters which pin down dislocation movement. Dislocation loops were still observed in some samples after 1, 400°C annealing while the hardness was almost recovered to that in the unirradiated state. Thus, the existence of dislocation loops is not grounds for hardening in irradiated AlN and SiC.
- 一般社団法人 日本原子力学会の論文
著者
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Yano Toyohiko
Research Laboratory For Nuclear Reactors Tokyo Institute Of Technology
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Iseki Takayoshi
Department Of Inorganic Materials Faculty Of Engineering Tokyo Institute Of Technology
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Suzuki Tetsuya
Department Of Computer Science Faculty Of Engineering Yamanashi University
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SUEMATSU Hisayuki
Center for Materials Science, Los Alamos National Laboratory
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KIM Chang-Sam
Department of Inorganic Materials, Tokyo Institute of Technology
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TEZUKA Mitsuharu
Department of Inorganic Materials, Tokyo Institute of Technology
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ISEKI Takayoshi
Department of Inorganic Materials, Tokyo Institute of Technology
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