首页> 外文期刊>Refractories and Industrial Ceramics >Research in the Field of Preparing Molded and Unmolded Refractories Based on High-Alumina HCBS. Part 3. Effect of Firing Temperature on Sintering and Mullitization of Materials Prepared on the Basis of Composite Composition HCBS1
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Research in the Field of Preparing Molded and Unmolded Refractories Based on High-Alumina HCBS. Part 3. Effect of Firing Temperature on Sintering and Mullitization of Materials Prepared on the Basis of Composite Composition HCBS1

机译:基于高铝HCBS的模制和非模制耐火材料制备领域的研究。第3部分。烧成温度对基于复合成分HCBS1制备的材料的烧结和多相化的影响

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摘要

The effect of firing temperature on sintering and mullitization of six batches of specimens prepared from HCBS based on high-alumina bauxite and very fine quartz glass (VFQG) is studied. In the range 900 - 1200A degrees C (soaking 1 h) normal sintering is noted accompanied by insignificant (0.4 - 0.5%) shrinkage and a sharp increase in ultimate strength in bending (110 - 130 MPa). In the range 1200 - 1400 of 1500A degrees C (depending on composition) specimen growth by 1.0 - 2.5% is noted, due to mullitization. Depending on composition and solid phase fineness the start of sintering for mullitized specimens is noted at temperatures exceeding 1400 - 1500A degrees C. Specimen material modeling a matrix system of high-alumina refractories has high strength and volume constancy after prolonged thermal ageing.
机译:研究了烧成温度对六批由高铝矾土和极细石英玻璃(VFQG)制成的HCBS试样的烧结和乳化的影响。在900-1200A摄氏度(均热1小时)的范围内,正常烧结伴随着微不足道的(0.4-0.5%)收缩和弯曲极限强度(110-130 MPa)的急剧增加。在1500A的1200至1400范围内(取决于组成),由于进行了多晶化,因此使样品生长了1.0至2.5%。取决于组成和固相细度,注意到在超过1400-1500A的温度下开始烧结可熔试样的烧结。长时间热老化后,模拟高氧化铝耐火材料基质系统的试样材料具有高强度和体积恒定性。

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