The development trend of refractory fibers was briefed as well. 概要介绍了耐火纤维的发展趋势。
So it can be used to predict thermal properties of refractory fibers. 为预测耐火纤维材料的热物性探索了一条新方法。
Polycrystalline fiber can serve as good insulating materials for furnaces operating above 1300 ℃ Specific structure and installation technique is needed for different refractory fibers used in reheating furnaces, forging furnaces, soaking pits and coke-ovens. 多晶纤维的开发,为1300℃以上的高温炉提供了优良的绝热材料。各种耐火纤维在加热炉、锻造炉、均热炉和焦炉上应用,须采取相应的结构形式与施工技术。
Problems in the development and application of refractory fibers 耐火纤维开发与应用中的几个问题
Surface treatment of refractory fibers and its dispersion in refractory matrix 耐火纤维表面处理及其在耐火材料基质中的分散
Development and Study of the Needled Felts of Zircon Refractory Fibers 锆英石质耐火纤维针刺毯开发研究
Chemical reactions between refractory metal ( RM) and carbon in hybrid fibers of carbon and RM reinforced carbon matrix composites were studied. 研究了碳纤维难熔金属纤维混杂增强碳基体复合材料中难熔金属与碳之间的化学反应。
Preparation of aluminosilicate refractory fibers by using sol-gel process 溶胶&凝胶法制备硅酸铝耐火纤维
As the energy-saving high-temperature furnace insulation materials, environment-friendly biodegradable refractory fibers can be entirely replace the traditional Aluminum silicate refractory fibers in some areas. 作为新型的高温隔热节能材料,环保型可降解陶瓷纤维已经在某些领域完全替代了传统的硅酸铝纤维。