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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effects of carbon and silicon on microstructure and mechanical properties of pressureless sintered B4C/TiB2 composites
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Effects of carbon and silicon on microstructure and mechanical properties of pressureless sintered B4C/TiB2 composites

机译:碳和硅对无气烧结B4C / TIB2复合材料的微观结构和力学性能的影响

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B4C/TiB2 ceramic composites were fabricated by reinforcing carbon and silicon (10 wt.% total mass) with the help of pressureless sintering at 2150 degrees C. The influence of C and Si additives on the phase composition, microstructures and mechanical properties of B4C/TiB2 ceramic composites were investigated through the characterizations of XRD, SEM, BSEM and EDS. Compared to B4C/TiB2 ceramic composites without C-Si additives, coarsely plate-like SiC grains were formed in composites at a C: Si mass ratio similar to 0:10. By increasing the C:Si mass ratio, the size of the plate-like SiC grains decreases, while the amount of plate-like SiC grains increases. When the C:Si mass ratio was 7:3, multilamellar graphite appeared on the B4C grain boundary. Moreover a large number of lamellar graphite grains appeared at a mass ratio of C:Si similar to 10:0. Graphite reacted with B2O3 on the B4C grain boundary, and the sintered body shrank quickly. Due to the presence of lamellar graphite, the relative density of the sintered body significantly increased from 89.2% to 98.9%. The mechanical properties such as flexural strength similar to 336 MPa (similar to 26.79% increment) and fracture toughness similar to 5.11 MPam(1/2) (similar to 21.19% increment) were significantly improved compared with the B4C/TiB2 ceramic composite. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过在2150℃的压力烧结的帮助下,通过加强碳和硅(10重量%的总质量)来制造B4C / TIB2陶瓷复合材料。C和Si添加剂对B4C / B4C /的相相组成,微观结构和机械性能的影响,C和Si添加剂的影响通过XRD,SEM,BSEM和EDS的特征来研究TIB2陶瓷复合材料。与B4C / TIB2陶瓷复合材料相比,没有C-Si添加剂,在C:Si质量比的复合材料中形成粗板状SiC晶粒与0:10类似。通过增加C:Si质量比,板状SiC晶粒的尺寸降低,而板状SiC晶粒的量增加。当C:Si质量比为7:3时,B4C晶界上出现多岩石墨。此外,大量的层状石墨晶粒以C:Si的质量比类似于10:0。石墨与B2C晶界的B2O3反应,烧结体迅速缩小。由于存在层状石墨,烧结体的相对密度显着增加到89.2%至98.9%。与B4C / TIB2陶瓷复合材料相比,类似于336MPa(类似于26.79%的增量)和类似于5.11mPam(1/2)(类似于21.19%的增量)的弯曲强度,如类似的弯曲强度。 (c)2018年elestvier b.v.保留所有权利。

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