首页> 外国专利> A PROCESS FOR THE PRODUCTION OF VALUE ADDED REFRACTORY AGGREGATES FROM LOW GRADE BAUXITE AND VALUE ADDED REFRACTORY AGGREGATES PRODUCED THEREBY.

A PROCESS FOR THE PRODUCTION OF VALUE ADDED REFRACTORY AGGREGATES FROM LOW GRADE BAUXITE AND VALUE ADDED REFRACTORY AGGREGATES PRODUCED THEREBY.

机译:一种由低级铝土矿生产增值耐火材料和由此生产的增值耐火材料的方法。

摘要

The characteristic process step is that bauxite at first is partially beneficiated with 5 to 15% cone. HCI at room temperature to remove one of the detrimental impurity namely lime. In the next step, rice husk ash, which is a waste and abundantly available material is added to this bauxite so that the final composition ranges between 70 to 80% AI2O3. The rest of the impurities of bauxite - Fe2O3 and TiO2 - enter into the lattice structure of mullite as solid solution. AI3+ present in the octahedral site of mullite crystal is substituted by Ti4+ causing aluminium ion vacancies, which enhance the mass transport and sintering rate. The firing schedule is particularly controlled between 1050° to 1250°C, so that mullite formation is completed and the low melting phase from Fe2O3 and TiO2l cannot develop. The ultimate high alumina mullite aggregates thus developed is much superior compared to directly calcined bauxite in terms of physical, micro-structural and thermo-mechanical properties. The final product is characterized by 96% densification, compact and homogeneous microstructure with an average grain size of 3 micro-m and refractoriness under load value of 1600°C.
机译:典型的工艺步骤是首先将铝土矿的5%到15%的锥体选矿。在室温下用HCl除去有害的杂质之一,即石灰。在下一步中,将稻壳灰(一种废料和大量可利用的材料)添加到该铝土矿中,以使最终成分在70%至80%Al2O3之间。铝土矿的其余杂质Fe2O3和TiO2以固溶体形式进入莫来石的晶格结构。莫来石晶体八面体中存在的AI3 +被Ti4 +取代,引起铝离子空位,从而提高了质量传输和烧结速率。特别地,将烧制时间表控制在1050℃至1250℃之间,从而完成莫来石的形成并且不能形成来自Fe 2 O 3和TiO 2的低熔点相。因此,与直接煅烧的铝土矿相比,如此开发的最终高铝莫来石骨料在物理,微观结构和热机械性能方面要优越得多。最终产品的特点是具有96%的致密化,致密且均匀的微观结构,平均晶粒尺寸为3微米,在1600°C的载荷下耐火度高。

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