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首页> 外文期刊>Progress in Materials Science >Deformation behavior and amorphization in icosahedral boron-rich ceramics
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Deformation behavior and amorphization in icosahedral boron-rich ceramics

机译:ICOSAHEDRAL富含硼硼陶瓷的变形行为和非杂化

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摘要

Among hard materials, icosahedra-based boron-rich ceramics are only second to diamond-based structures. This class of ceramics possesses lower density, higher thermal and chemical resistance, and can be easily mass-produced compared to diamond-based materials. The present article reviews contemporary knowledge of atomic structures, mechanical properties and deformation mechanisms of a range of boron-rich ceramics, including different allotropes of boron, polymorphs of boron carbide, and futuristic materials such as boron suboxide, "BAM" materials and their derivatives. Despite their high-hardness and strength, many icosahedral boron-rich ceramics are prone to a unique deleterious deformation mechanism under high pressure, called "amorphization", which causes loss of strength and catastrophic failure. This article presents a critique of established approaches that explain the amorphization phenomena. Main highlights include the demystification of Raman spectrum of amorphized boron carbide using a multi-scale atomistic computational approach and atomistic investigation into connection between high-pressure deformation, such as those in shock conditions and rise in temperature up to melting. We finally probe avenues for enhancing performance of these ceramics well beyond contemporary thresholds, by proposing research pathways using rigorous computational material informatics.
机译:在硬质材料中,基于ICOSAHEDRA的富含硼的陶瓷仅为秒到金刚石的结构。这类陶瓷具有较低的密度,较高的热和耐化学性,与基于金刚石的材料相比,可以容易地批量生产。本文介绍了一系列富含硼陶瓷的原子结构,机械性能和变形机制的当代知识,包括硼,碳化硼的多晶型物和硼亚氧化物,“BAM”材料及其衍生物等硼的多晶型物质。尽管他们的高硬度和实力,但许多ICOSaheDral硼硼陶瓷在高压下易于出现独特的有害变形机制,称为“非晶化”,这导致强度和灾难性失败的丧失。本文提出了一种批判的既定方法,解释了非晶化现象。主要亮点包括使用多尺度原子计算方法和高压变形之间的原子调查,如休克条件下的那些,搅拌和温度升高到熔化的原子调查,使非晶碳化硼的拉曼光谱的催眠化。我们最后通过提出使用严格的计算材料信息学提出研究途径来提高这些陶瓷的性能,从而超越当代阈值,以提高这些陶瓷的性能。

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