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Hexagonal boron nitride-based composites: an overview of processing approaches and mechanical properties

机译:Hexagonal boron nitride-based composites: an overview of processing approaches and mechanical properties

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摘要

Hexagonal boron nitride (h-BN)-based composites have been gaining prominence due to their versatile and significantly improved properties. For example they have good strength, better thermal conductivity, excellent resistance to thermal shocks and high temperatures, molten metal erosion resistance, ablation resistance, excellent machinability, good lubricating and chemical inertness. Owing to its excellent comprehensive properties, h-BN has significant potential applications in the fields of electronics, machinery, aerospace, nuclear energy, and metallurgy. Current article, first tries to critically review the literature, mainly published in the last decade, exploring the peculiar crystal structure and enhanced properties of h-BN and then various h-BN-based ceramics and its composites with oxides, nitrides, carbides, metals, and complex ceramics have been discussed based on their fabrication methods, mechanical properties, and the resultant applications. As per the reviewed results, hot pressing results in enhanced mechanical properties such as fracture toughness and flexural strength owing to the incorporation of BN by in situ reaction, which prevents BN agglomeration and reduces the size and quantity of defects. In contrast, the pressureless sintering method is reported to cause poor mechanical properties as compared to other fabrication methods of h-BN ceramics due to large porosity and poor bonding between h-BN grains caused by the forming of card room structure. Consequently, the green body's shrinkage is obstructed, and the expansion is occurred during the sintering process. All these aspects have been discussed in detail and they are the part of this review article.
机译:六角氮化硼(h-BN)的复合材料已经获得突出由于他们吗多才多艺的和显著提高性能。例如他们有良好的强度,更好热导率,优良的抵抗热冲击和高温,熔化金属耐腐蚀性、耐烧蚀、优秀的机械加工性,良好的润滑和化学惰性。综合属性,h-BN意义重大领域的潜在应用电子、机械、航空航天、核能能源和冶金。主要是试图批判性回顾文献发表在过去的十年中,探索独特的晶体结构和增强h-BN然后各种h-BN-based的属性与氧化物陶瓷及其复合材料,氮化物、碳化物、金属和复杂的陶瓷讨论了基于制造方法、力学性能和合成应用程序。紧迫导致增强的机械如断裂韧性和属性挠曲强度由于整合BN的原位反应,防止BN聚集,降低规模和数量的缺陷。据报道,烧结方法导致贫穷相对于其它机械性能由于大型h-BN陶瓷的制备方法孔隙度和穷人h-BN颗粒之间的结合由卡空间结构的形成引起的。因此,绿色身体的收缩阻塞,扩张是发生在烧结过程。详细讨论的部分这篇评论文章。

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