材料科学
复合材料
化学气相渗透
碳化硅
抗弯强度
相间
热解
氧化物
化学气相沉积
氮化硼
制作
微观结构
化学工程
纳米技术
生物
工程类
病理
医学
冶金
遗传学
替代医学
作者
Xiaxiang Zhang,Jinren Yi,Xin Yang,Yuanqi Weng,Cunqian Fang,Qizhong Huang
摘要
Abstract Two kinds of novel modified C/C‐SiC‐ZrC composites were prepared via precursor infiltration and pyrolysis, as pyrocarbon (PyC)/silicon carbide (SiC) and PyC/boron nitride (BN) dual‐layer interphases were separately structured on the fibers by means of chemical vapor infiltration. Data analysis and conclusions are served for investigating the effects of these two interface layers on mechanical and anti‐ablative properties. On the mechanical property hand, both PyC/BN and PyC/SiC interphase layers play positive roles, resting with the reduction of fiber damage during the fabrication process. Compared with BN, SiC shows better enhancement as the flexural strength of PyC/BN and PyC/SiC interphase‐modified composites are 214.9 and 229.2 MPa, respectively. On the ablative property hand, after oxyacetylene flame ablation for 60 s, the mass and linear ablation rates of the composites modified by PyC/SiC interface were 2.2 mg/s and 9.7 μm/s, which is much lower than that modified by PyC/BN. The inferior ablation properties of PyC/BN‐CSZ were attributed to the vaporization of the B 2 O 3 gas that destroys the integrity of the oxide film and oxygen erosion on the substrate through the damaged BN interface.
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