材料科学
陶瓷
烧结
相对密度
紧迫的
热导率
复合材料
开裂
热等静压
冶金
绿色车身
层状结构
润滑油
微观结构
原材料
空隙(复合材料)
剥脱关节
结构材料
蒸发
热压
无压烧结
热的
作者
Shuxuan Wang,YuQi Yang,Lei Yang,Xiaodong Li,Jiakai Cao,Gang He
标识
DOI:10.26599/jac.2026.9221307
摘要
Abstract Owing to its strong B–N covalent bonds and inferior dissolution–precipitation characteristics in selected liquid phases, densification of h-BN ceramics is generally achieved via pressure-assisted sintering techniques. Herein, high-density h-BN ceramics were fabricated by a secondary cold isostatic pressing (CIP(II))-assisted pressureless sintering process using commercial micron-sized h-BN powder as the raw material and deionized water as a green lubricant additive. The addition of water significantly promotes the particle sliding and rearrangement of lamellar structured h-BN during the forming process, and the relative density of the green body can reach 94.60%. A secondary cold isostatic pressing applied to the dried green body can effectively suppress cracking caused by water evaporation and further increase the relative density to 98.10%. The use of low-oxygen raw powder effectively inhibits void formation induced by volatilization, reduces density loss after high-temperature sintering, and enhances the thermal conductivity of pressureless-sintered h-BN ceramics. The internal flake-like h-BN grains retained a highly oriented layered structure, endowing the ceramic with excellent in-plane thermal conductivity (up to 57.16 W·m−1·K−1). This study offers an alternative approach for the industrial-scale production of high-density h-BN ceramics through pressureless sintering.
科研通智能强力驱动
Strongly Powered by AbleSci AI