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マトリックス部にチタニアとアルミナ微粉末を添加したマグネシア質ポーラス耐火物の特性
- フォーマット:
- 論文
- 責任表示:
- 土成, 昭弘 ; 保木井, 利之 ; 平木, 外二 ; 金岡, 千嘉男
- 言語:
- 日本語
- 出版情報:
- The Ceramic Society of Japan = 日本セラミックス協会, 1990-11-01
- 著者名:
- 掲載情報:
- Journal of the Ceramic Society of Japan
- ISSN:
- 0914-5400
- 巻:
- 98
- 通号:
- 1143
- 開始ページ:
- 1191
- 終了ページ:
- 1199
- バージョン:
- publisher
- 概要:
- Properties of permeable magnesia refractory containing titania and alumina powder in the matrix were investigated in order to produce permeable refractory with high thermal shock resistance, corrosion resistance and low penetration of molten steel. By adding titania and alumina powder in the matrix, bright glossy portion and dark glossy portion were observed in the matrix and in the grain boundary of magnesia. Bright glossy portion was CaTiO_3 (Perovskite) from X-ray … diffraction and EPMA analyses. Dark glossy portion was suspected to be Al_2TiO_5 (Aluminum Titanate) from EPMA analyses although Al_2TiO_5 was not detected by X-ray diffraction. The collapse of magnesia grains was caused by the generation of CaTiO_3 and Al_2TiO_5 in the magnesia grain boundary. Apparent porosity, mean; pore diameter and permeability became high and large as TiO_2/Al_2O_3 molar ratio decreased, and reached the maximum value at the equivalent molar ratio. However, above the equivalent molar ratio the values became low and small. Permeability was proportional to the product of apparent porosity and the square of average pore diameter. Thermal shock resistance increased twice compared with no addition of TiO_2/Al_2O_3. Although corrosion resistance deteriorated by adding TiO_2/Al_2O_3, it was superior to the conventional porous alumina refractory. Penetration thickness of molten steel was not dependent on TiO_2/Al_2O_3 addition, and was very small compared with conventional one. This permeable magnesia refractory will have a good possibility of being used on actual operation. 続きを見る
- URL:
- http://hdl.handle.net/2297/24634
類似資料:
The Ceramic Society of Japan = 日本セラミックス協会 |
[金岡千嘉男] |
The Ceramic Society of Japan = 日本セラミックス協会 |
金沢大学工学部 |
The Ceramic Society of Japan |
金沢大学21世紀COEプログラム |
金沢大学計算機センター = Data Processing Center Kanazawa University |
|
[金岡千嘉男] |
共立出版 |
日刊工業新聞社 |