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1)  magnesite-dolomite refractories
镁钙质耐火材料
1.
The production and application status of magnesite-dolomite refractories such as fired magnesia-calcium brick,unburned magnesia-calcium(carbon) brick and Mg-Ca coating mixture for tundish etc are introduced and it is pointed out that magnesite-dolomite refractories should be developed on high CaO content,high grade,seriation and non-shaped refractories in the near future.
介绍了我国烧成镁钙砖、不烧镁钙(碳)砖和镁钙质中间包涂料等镁钙质耐火材料的生产和使用现状,指出今后我国的镁钙质耐火材料应向高CaO含量、高档次、系列化和不定形方向发展。
2)  MgO-CaO refractory
镁钙耐火材料
1.
Influence of MgO-CaO refractory on impurity of IF steel;
镁钙耐火材料对IF钢杂质的影响
2.
Effect of TiO_2 additive on hydration-resistent characteristics of MgO-CaO refractory;
通过对TiO2添加剂的理论分析和基质的水化试验,研究了TiO2对镁钙耐火材料防水化性能的影响。
3)  Magnesia-calcia refractory raw materials
镁钙质耐火原料
4)  high calcium magnesia-calcia refractory
高钙镁钙耐火材料
5)  Magnesia-based refractories
镁质耐火材料
6)  magnesia refractory
镁质耐火材料
1.
The effect of mixture of rare earth oxides on the sintering properties,microstructure and mechanical properties of magnesia refractory were studied.
研究了添加Y_2O_3的混合稀土氧化物对镁质耐火材料的烧结性、力学性能和显微结构的影响。
2.
On the basis of mathematical analysis, the formulae have been establishea for calculating the pyrometrric solidus composition of magnesia refractory in the system M-MA-M2S-CMS.
本文运用数学分析的方法,建立了M-MA-M_2S-CMS系镁质耐火材料高温固相组成的计算公式。
补充资料:镁铬质耐火材料基质结构单元显微结构


镁铬质耐火材料基质结构单元显微结构


镁铬质耐火材料基质结构单元显微结构
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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