首页> 外文期刊>Refractories and Industrial Ceramics >NEW PERICLASE-SPINEL REFRACTORIES FROM DENSELY SINTERED HIGH PURITY MAGNESITE AND NEW SYNTHETIC COMPOSITIONS BASED ON SPINEL. PART 1. STUDY OF MINERAL COMPOSITION, MICROSTRUCTURE, THERMAL EXPANSION, AND ULTIMATE STRENGTH IN COMPRESSION
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NEW PERICLASE-SPINEL REFRACTORIES FROM DENSELY SINTERED HIGH PURITY MAGNESITE AND NEW SYNTHETIC COMPOSITIONS BASED ON SPINEL. PART 1. STUDY OF MINERAL COMPOSITION, MICROSTRUCTURE, THERMAL EXPANSION, AND ULTIMATE STRENGTH IN COMPRESSION

机译:稠密烧结高纯度菱镁矿的新的胶束-尖晶石耐火材料和基于尖晶石的新合成成分。第1部分。压缩中的矿物成分,微观结构,热膨胀和极限强度的研究

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Six specimens of magnesia-spinel material are made under laboratory conditions. Specimens are prepared at 1600 from sintered magnesite and three different compositions based on spinel, previously synthesized at 1760 . Sintered magnesite and synthesized spinel properties are provided. Raw material properties in relation to different spinel content within them, apparent density, additions introduced, and also their effect on final product, are shown. Three forms of final product contain 8-11 wt.% Al_2O_3, and the rest contain from 19-21 wt.% Al_2O_3. Photographs taken in a scanning electron microscope, and results of microstructural analysis of raw material and final product, point to formation of direct periclase-periclase and periclase-spinel bonds, and also secondary calcium aluminate and calcium silicate phases. Secondary spinel is detected in the form of a solution within periclase, and also at grain boundaries within magnesia-spinel refractories. On the basis of petrographic criteria (mineral composition, microstructure), and also linear thermal expansion coefficient (LTEC) and ultimate strength in compression for final materials, the authors of this article propose a most suitable material with respect to quality for testing in high-temperature branches of industry.
机译:在实验室条件下制作了六个镁质尖晶石材料样品。样品由烧结菱镁矿和基于尖晶石的三种不同成分(先前于1760年合成)于1600年制备。提供了菱镁矿的烧结和合成的尖晶石性质。显示了与其中不同尖晶石含量,表观密度,引入的添加剂以及它们对最终产品的影响有关的原材料性能。三种形式的最终产品包含8-11 wt%的Al_2O_3,其余形式包含19-21 wt。%的Al_2O_3。在扫描电子显微镜下拍摄的照片以及原材料和最终产品的微观结构分析结果表明,直接的周长蛋白酶-过氧化物酶和周长酶-尖晶石键的形成,以及铝酸钙和硅酸钙的第二相。次级尖晶石以溶液的形式在周长石中以及在氧化镁-尖晶石耐火材料的晶界处被检测到。根据岩石学标准(矿物成分,微观结构),以及最终材料的线性热膨胀系数(LTEC)和压缩极限强度,本文的作者提出了一种最适合测试高品质材料的材料。工业的温度分支。

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