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STUDY OF MUATI-CARBIDE B_4C-SiC/(Al,Si) REACTION INFILTRATED COMPOSITES BY SEM WITH EBSD

机译:EBSD扫描电镜观察多碳化物B_4C-SiC /(Al,Si)反应渗透复合材料

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Characterisation in materials science can be represented by a tetrahedron with the fundamental vertices of composition, properties, processing and applications. In the definition of conceptual developments and design of new materials with singular or unique properties, this characterisation often takes a key role in clarifying what the new material is. B4C has a unique combination of properties that makes it suitable for a wide range of applications in engineering: refractoriness, thermal stability, high hardness with abrasion resistance and low density. However, the low self-diffusion coefficient of B_4C limits full densification in sintering. This constraint was overturned by incorporating metallic alloys in the open structure of the B_4C, or multi-carbide ceramic matrix, thus creating composites strengthened by the metallic phase. Al as a reactive infiltrant of B_4C has a poor wettability below 1000 °C and undesirable reactions occur at higher temperatures. An alternative is alloying Al with other metallic elements such as Si.
机译:材料科学中的表征可以用具有组成,特性,加工和应用的基本顶点的四面体来表示。在定义具有单一或独特属性的新材料的概念发展和设计时,这种表征通常在阐明新材料是什么方面起着关键作用。 B4C具有独特的性能组合,使其适用于多种工程应用:耐火性,热稳定性,高硬度和耐磨性以及低密度。但是,B_4C的低自扩散系数限制了烧结过程中的完全致密化。通过将金属合金掺入B_4C的开放结构或多碳化物陶瓷基体中,克服了这种限制,从而创建了由金属相强化的复合材料。作为B_4C的反应性浸润剂,Al在1000°C以下的润湿性很差,在较高的温度下会发生不良反应。一种替代方法是将Al与其他金属元素(例如Si)合金化。

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