二種類の噴霧発生器を用いた噴霧熱分解による酸化コバルト微粉末の合成
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概要
- 論文の詳細を見る
Micron-sized PbO-B_2O_3-SiO_2 glass powders were directly prepared by high temperature flame spray pyrolysis. The flow rates of fuel and carrier gas in the flame spray pyrolysis were critical to the control of morphologies of PbO-B_2O_3-SiO_2 glass powders. The optimum flow rate of fuel gas to prepare the PbO-B_2O_3-SiO_2 glass powders with spherical shape and micron-size was 20L/min. The powders prepared at low flow rates of carrier gas had bimodal size distributions with nanometer and micron sizes. The number of the nanometer size powders increased with decreasing the flow rate of carrier gas. When the flow rate of carrier gas was 30L/min, the prepared powders had spherical shape and micron size. The transmittances of the dielectric layers were higher than 90% regardless of the flow rates of carrier gas when the dielectric layers were sintered at temperatures between 520 and 580℃.
- 社団法人日本セラミックス協会の論文
- 2007-08-01
著者
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KANG Yun
Department of Chemical Engineering, Konkuk University
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Kang Yun
Dep. Of Chemical Engineering Konkuk Univ.
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HONG Seung
Department of Physics and Astronomy, Seoul National University
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Cho Jung
Dep. Of Chemical Engineering Konkuk Univ.
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JUNG Dae
Department of Chemical Engineering, Konkuk University
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CHO Jung
Department of Chemical Engineering, Konkuk University
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Hong Seung
Department Of Chemical Engineering Konkuk University
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Kang Yun
Department Of Chemical Engineering Konkuk University
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Jung Dae
Dep. Of Chemical Engineering Konkuk Univ.
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Jung Dae
Department Of Chemical Engineering Konkuk University
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Kang Yun
Department Of Chemical Engineering Hiroshima University
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Hong Seung
Department Of Biological Sciences Dankook University
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Cho Jung
Department of Chemical Engineering, Kongju National University
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