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Structural evolution in reaction-bonded silicon carbide and boron carbide composites (RBSBC)

机译:反应键合碳化硅和硼碳化物复合材料的结构演变(RBSBC)

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摘要

Reaction-bonded silicon carbide and boron carbide composites (RBSBC) are promising for laser mirror, armor and other applications. However, the structural evolution in RBSBC has not been fully understood. From microscopic characterization and thermodynamic analysis, we propose the mechanisms which can successfully explain observed microstructures, e.g., core-rim structure in SiC grains and plate-like SiC inside B4C grains, respectively. In addition, we find that the pre-existing SiC particles may hinder the formation of polygonal SiC in Si and lead to more B4C dissolution during the fabrication of RBSBC due to its lower B4C percentage than that in corresponding reaction-bonded boron carbide composites (RBBC). We believe that the results would shed light on potential fabrication optimization of RBSBC.
机译:反应键合的碳化硅和碳化硼复合材料(RBSBC)是激光镜,护甲和其他应用的前途。 然而,RBSBC的结构演变尚未完全理解。 从显微镜表征和热力学分析中,我们提出了可以成功解释观察到的微观结构,例如核心边缘结构的机制,分别在B4C颗粒内的SiC晶粒和板状SiC中。 此外,我们发现预先存在的SiC颗粒可能妨碍在Si中形成多边形SiC,并且由于其低B4C百分比而导致RBSBC的制造过程中的更多B4C溶解,其比相应的反应键合碳化硼复合材料(RBBC )。 我们认为,结果将揭示罗布布潜能制造优化。

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