Ruby-Laser Scattering Diagnostics of a Supersonic Plasma Flow for Low-Pressure Plasma Spraying
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概要
- 論文の詳細を見る
Truly reliable measurements of electron temperature and density in a plasma flow for low-pressure plasma spraying (LPPS) were performed for the first time, using incoherent Thomson scattering of ruby-laser light. The results indicate the characteristic feature of a supersonic nozzle flow, namely, successive appearance of oblique shock-wave heating (〜1 eV) and compression (4×10^<21> m^<-3>), and subsequent cooling (〜0.2 eV) and rarefaction (1×10^<21> m^<-3>).
- 社団法人応用物理学会の論文
- 1987-10-20
著者
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KANDA Hiroshi
Department of Pediatrics and Child Health, Kurume University School of Medicine
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Uchino Kiichiro
Department Of Applied Science For Electronics And Materials Interdisciplinary Graduate School Of Eng
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Uchino Kiichiro
Department Of Energy Conversion Kyushu University
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Akazaki Masanori
Department Of Electrical Engineering And Computer Science Kumamoto University
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Akazaki Masanori
Department Of Energy Conversion Engineering Graduate School Of Engineering Science Kyushu University
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Manabe Yoshio
Matsushita Electric Industrial Co. Ltd.
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Koga Kazuyuki
Department Of Energy Conversion Kyushu University
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Takeda Kouichi
R & D Laboratories-i Nippon Steel Corporation
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真鍋 由雄
九大総理工
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Muraoka Katsunori
Department Of Applied Science For Electronics And Materials Interdisciplinary Graduate School Of Eng
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MATSUDA Yoshinobu
Department of Electrical and Electronic Engineering, Nagasaki University
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HIDAKA Ryouta
Plant and Machinery Division, Nippon Steel Corporation
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OOKI Tsutomu
Plant and Machinery Division, Nippon Steel Corporation
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TAKEDA Kouichi
R & D Laboratories-I, Nippon Steel Corporation
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KONDO Katsuyuki
Department of Energy Conversion, Kyushu University
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Ooki Tsutomu
Plant And Machinery Division Nippon Steel Corporation
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Hidaka Ryouta
Plant And Machinery Division Nippon Steel Corporation
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Matsuda Yoshinobu
Department Of Electrical And Electronic Engineering Nagasaki University
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Kanda Hiroshi
Department Of Energy Conversion Kyushu University
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Kanda Hiroshi
Department Of Applied Physics Faculty Of Engineering University Of Tokyo:(present Address)central La
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