Influence of slurry and injection methods on the fabrication of C f /ZrB 2 ‐SiC composite via slurry injection and RMI

泥浆 制作 复合数 材料科学 复合材料 医学 病理 替代医学
作者
Yongsheng Liu,Gao Wei,Yawen Ma,Peng‐Cheng Ma,Jianyong Tu,Jingxin Li,Yongsheng Liu,Shen-Li Fu,Yejie Cao,Jian Chen,Yu Pan,Zbigniew Pędzich,Yu Pan,Zbigniew Pedzich
出处
期刊:Journal of the American Ceramic Society [Wiley]
卷期号:108 (10)
标识
DOI:10.1111/jace.70031
摘要

Abstract To address the issues of long preparation cycle and high cost in fiber‐reinforced ultra‐high temperature ceramic matrix composites, C f /ZrB 2 ‐SiC composite was prepared by slurry injection combined with reactive melt infiltration (RMI). The dispersion and rheological behavior of slurries with different compositions were investigated, as well as the impact of various slurries and injection methods on the three‐dimensional filling of porous C f /ZrB 2 ‐C composite. The porosity of porous C f /ZrB 2 ‐C composite was 24.4–37.2% and the bulk density was 1.70–2.36 g/cm 3 after injection and infiltration. The porous C f /ZrB 2 ‐C composite obtained by double‐sided injection has uniform distribution of ceramic phase, and the bulk density and open porosity are 2.36 g/cm 3 and 24.4% when the ceramic content is 70 wt.% in slurry. Additionally, the volume filling rate has increased by 32% compared to single‐injection. After 1 h of silicon infiltration at 1450°C, the flexural strength and fracture toughness of the C f /ZrB 2 ‐SiC composite were 188.8 MPa and 5.51 MPa·m 1/2 . Compared with other RMI processes, this study showed no significant damage to carbon fibers after low‐temperature silicon infiltration, and has certain advantages in mechanical properties. It achieved uniform high solid‐content ZrB 2 incorporation and rapid densification, enabling cost‐effective short‐cycle fabrication of C f /ZrB 2 ‐SiC composite.
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