Freezing of Interstitial-Type Dislocation Loops Grown as Vacancy Sources in Nearly Perfect Aluminum Crystals
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概要
- 論文の詳細を見る
In order to investigate interstitial-type dislocation loops grown as vacancy sources after a temperature rise in nearly perfect aluminum crystals, a single-scanned X-ray Lang topograph was taken while a specimen crystal was cooled to room temperature from 295℃ at a cooling rate of 1000℃/h in air. The interstitial loops were found to be frozen in the crystal without multiplication of glide dislocations and few loops disappeared upon cooling.
- 社団法人日本物理学会の論文
- 1995-03-15
著者
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紀 隆雄
広島国際学院大学工学部
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Ono Kanta
Department Of Engineering The University Of Tokyo
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MIZUNO Kiyoshi
Department of physics,Tokyo Metropolitan University
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MIZUNO Kaoru
Department of Physics, University of Durham, Science Laboratories, South Road
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Mizuno K
Defence Evaluation And Res. Agency Malvern Worcestershire Gbr
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ITO Kazuyoshi
Department of Materials Science and Engineering, Yamagata University
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Ono K
Department Of Engineering The University Of Tokyo
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Ono Keiji
Second Department Of Internal Medicine Oita Medical University
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Kino Takao
Faculty Of Engineering Hiroshima Kokusai Gakuin University
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Ono Kotaro
Department Of Physics Shimane University
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Ono Kotaro
Department Of Material Science Interdisciplinary Faculty Of Science And Engineering Shimane Universi
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Mizuno K
Department Of Material Science Faculty Of Science And Engineering Shimane University
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Mizuno Kaoru
Department Of Physics Shimane University
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Mizuno Kiyoshi
Faculty Of Integrated Arts And Science Tokushima University
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Ito Kazuyoshi
Department Of Material Science Interdisciplinary Faculty Of Science And Engineering Shimane Universi
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Mizuno Kaoru
Department Of Material Science Faculty Of Science And Engineering Shimane University
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