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首页> 外文期刊>Journal of the European Ceramic Society >Aluminium oxynitride-hexagonal boron nitride composites with anisotropic properties
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Aluminium oxynitride-hexagonal boron nitride composites with anisotropic properties

机译:氧氮化铝 - 六方氮化硼复合材料,具有各向异性特性

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摘要

Structure of hexagonal boron nitride (h-BN) consist of hexagonal layers with strong covalent bonds and weak van der Waals bonds between them. Such specific structure and usually plate-like grains cause anisotropic properties of h-BN based materials. The aim of the present work was preparation of composites in the aluminium oxynitride-hexagonal boron nitride system with anisotropic properties. SHS technique was used to obtain complex powders with both phases synthesized in situ. Mixtures of aluminium, aluminium oxide and different amount of boron were combusted in nitrogen and the powders were hot-pressed. The h-BN grains in the composites show plate-like shapes and crystallographic orientation. The specific microstructure and texture result in anisotropy of thermal properties; thermal conductivity was few times higher in the direction perpendicular to hot-pressing force and parallel to the longer diameter of h-BN grains. The texture effect is stronger than the effect of the h-BN content. (C) 2016 Elsevier Ltd. All rights reserved.
机译:六边形氮化硼(H-Bn)的结构由六边形层组成,具有强的共价键,它们之间的弱范围粘合。这种特定的结构和通常板状晶粒会导致基于H-BN材料的各向异性特性。本作本作的目的的目的是制备具有各向异性特性的氧氮化物 - 六方氮化硼体系中的复合材料。 SHS技术用于获得具有原位合成的两个阶段的复合粉末。铝,氧化铝和不同量的硼的混合物在氮气中燃烧,粉末热压。复合材料中的H-BN晶粒显示出板状形状和晶体取向。特定的微观结构和纹理导致热性能各向异性;导热率在垂直于热压力的方向上较高,并且平行于H-BN晶粒的较长直径。纹理效果比H-BN含量的效果强。 (c)2016 Elsevier Ltd.保留所有权利。

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