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首页> 外文期刊>Journal of the European Ceramic Society >Alumina reinforced eucryptite ceramics: Very low thermal expansion material with improved mechanical properties
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Alumina reinforced eucryptite ceramics: Very low thermal expansion material with improved mechanical properties

机译:氧化铝增强的锂霞石陶瓷:极低的热膨胀材料,具有改善的机械性能

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摘要

Composite materials formed by a LAS matrix reinforced with second phases are promising materials in many applications where better mechanical properties than those corresponding to conventional low thermal expansion coefficient materials are required. In this study we will show the capability of the design of a LAS-alumina submicron composite. The main scope of this work is to test the sinterability of the composites and to design a composition for a very low thermal expansion submicron composite. For this purpose, Taimei alumina (TM-DAR) powders and an ad hoc synthesized p-eucryptite phase were used to fabricate the composite. XRD phase compositions and microstructures are discussed together with data from dilatometries in a wide temperature range. The results obtained show the possibility of designing a submicron composite with a very low thermal expansion coefficient and improved mechanical properties that can be used in oxidizing conditions.
机译:由第二相增强的LAS基质形成的复合材料在许多应用中是有前途的材料,在这些应用中,需要比常规低热膨胀系数材料更好的机械性能。在这项研究中,我们将展示LAS-氧化铝亚微米复合材料的设计能力。这项工作的主要范围是测试复合材料的可烧结性,并为非常低热膨胀的亚微米复合材料设计一种成分。为此,使用Taimei氧化铝(TM-DAR)粉末和临时合成的p-锂霞石相来制造复合材料。讨论了XRD相的组成和微观结构,以及在较宽的温度范围内的比对仪数据。获得的结果表明设计具有非常低的热膨胀系数和改善的机械性能的亚微米复合材料的可能性,该复合材料可用于氧化条件。

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