首页> 外文会议>Proceedings of Unified International Technical Conference on Refractories: 7th Biennial Worldwide Congress >STUDY OF PORE DYNAMICS - AN UNIQUE APPROACH FOR DEVELOPING REFRACTORY MATERIALS
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STUDY OF PORE DYNAMICS - AN UNIQUE APPROACH FOR DEVELOPING REFRACTORY MATERIALS

机译:孔隙动力学的研究-开发耐火材料的独特方法

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Recent technological advances in steel making technology demand longer service life of refractory materials for higher production efficiency and economic operation. An increasing interest has been shown in recent years on pore size and its distribution for designing a material for specific application. Now it has been established that they can play a great role to control many material properties and radically improve resistance to hot corrosive fluids which is considered to be the greatest challenges to refractories. In this paper, a fundamental study on pore dynamics of Magnesia-Chrome refractories has been carried out to design a material for specific application. Mercury intrusion porosimetry approach supplemented by microscopic examination has been applied to understand the mechanism of pore dynamics. This study leads to the successful development of Magnesia-Chrome bricks for a particular application with a superior performance.
机译:炼钢技术的最新技术进步要求耐火材料的使用寿命更长,以提高生产效率和经济运行。近年来,对于设计特定用途的材料的孔径及其分布越来越显示出兴趣。现已确定,它们可以在控制许多材料性能以及从根本上提高对热腐蚀性流体的抵抗力方面发挥重要作用,这被认为是耐火材料的最大挑战。在本文中,已经对镁-铬耐火材料的孔隙动力学进行了基础研究,以设计用于特定用途的材料。采用水银压入孔隙率法并辅以显微镜检查以了解孔隙动力学的机理。这项研究成功地开发了镁砂-铬砖,用于具有优异性能的特殊应用。

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