首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Synthesis and characterization of Al2O3/SiC composite ceramics via carbothermal reduction of aluminosilicate precursor for solar sensible thermal storage
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Synthesis and characterization of Al2O3/SiC composite ceramics via carbothermal reduction of aluminosilicate precursor for solar sensible thermal storage

机译:通过碳热还原铝硅酸盐前体的碳热还原法制备用于太阳能显热的Al2O3 / SiC复合陶瓷及其表征

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摘要

Al2O3 material with high heat capacity and high thermal conductivity was in situ formed to bond with SiC for synthesizing Al2O3/SiC composite ceramics by the removal of silica in aluminosilicate precursor using carbothermal reduction method. Phase transformation, microstructural evolution, and the relevant variations in properties were studied in the temperature range 1460-1580 degrees C. Results indicated that the addition of Y2O3 improved the carbothermal reaction rate significantly and decreased the finish temperature of carbothermal reaction to 1500 degrees C. Incorporation of the in situ formed Al2O3 could lower the sintering temperature of SiC ceramic without decreasing the heat capacity. By sintering at the optimal temperature as 1540 degrees C, Al2O3/SiC composite ceramics with the heat capacity of 1.16 J/(g.K) and the high thermal conductivity of 13.73 W/(m.K) were obtained. The relatively high thermal conductivity endowed the composites with a good thermal shock resistance. This study was intended to identify the reaction conditions for obtaining sensible thermal storage materials with favorable morphology and properties by using a simple in situ synthesis method. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过碳热还原法去除铝硅酸盐前驱体中的二氧化硅,原位形成具有高热容量和高导热性的Al2O3材料与SiC结合,以合成Al2O3 / SiC复合陶瓷。在1460-1580℃的温度范围内研究了相变,微观结构演变和性能的相关变化。结果表明,Y2O3的加入显着改善了碳热反应的速率,并将碳热反应的完成温度降低到1500℃。原位形成的Al 2 O 3的掺入可以降低SiC陶瓷的烧结温度而不降低热容。通过在1540℃的最佳温度下烧结,获得具有1.16J /(g.K)的热容和13.73W /(m.K)的高热导率的Al 2 O 3 / SiC复合陶瓷。较高的导热率使复合材料具有良好的抗热震性。这项研究旨在确定通过使用简单的原位合成方法获得具有良好形貌和性能的显着储热材料的反应条件。 (C)2015 Elsevier B.V.保留所有权利。

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