Hu Chenglong, Hong Wenhu, Xu Xiaojing, Tang Sufang, Du Shanyi, Cheng Hui-Ming
Institute of Metal Research, Chinese Academy of Sciences, Shenyang, 110016, PR China.
Center for composite materials and structures, Harbin Institute of Technology, Harbin, 150001, PR China.
Sci Rep. 2017 Oct 13;7(1):13120. doi: 10.1038/s41598-017-13569-9.
Carbon fiber (CF) reinforced carbon-silicon carbide (C/C-SiC) composites are one of the most promising lightweight materials for re-entry thermal protection, rocket nozzles and brake discs applications. In this paper, a novel sandwich-structured C/C-SiC composite, containing two exterior C/SiC layers, two gradient C/C-SiC layers and a C/C core, has been designed and fabricated by two-step electromagnetic-coupling chemical vapor infiltration (E-CVI) for a 20-hour deposition time. The cross-section morphologies, interface microstructures and SiC-matrix growth characteristics and compositions of the composites were characterized by scanning electron microscopy (SEM), transmission electron microscopy (TEM) and X-ray diffraction (XRD), respectively. Microstructure characterization indicates that the SiC growth includes an initial amorphous SiC zone, a gradual crystallization of SiC and grow-up of nano-crystal, and a columnar grain region. The sandwich structure, rapid deposition rate and growth characteristics are attributed to the formation of thermal gradient and the establishment of electromagnetic field in the E-CVI process. The composite possesses low density of 1.84 g/cm, high flexural strength of 325 MPa, and low linear ablation rate of 0.38 μm/s under exposure to 5-cycle oxyacetylene flame for 1000 s at ~1700 °C.
碳纤维(CF)增强碳 - 碳化硅(C/C - SiC)复合材料是用于再入热防护、火箭喷管和制动盘应用的最有前途的轻质材料之一。本文通过两步电磁耦合化学气相渗透(E - CVI)工艺,在20小时的沉积时间内,设计并制备了一种新型的三明治结构C/C - SiC复合材料,该材料包含两个外部C/SiC层、两个梯度C/C - SiC层和一个C/C芯层。分别通过扫描电子显微镜(SEM)、透射电子显微镜(TEM)和X射线衍射(XRD)对复合材料的横截面形貌、界面微观结构、SiC基体生长特性和成分进行了表征。微观结构表征表明,SiC的生长包括一个初始的非晶SiC区、SiC的逐渐结晶和纳米晶体的生长,以及一个柱状晶粒区。三明治结构、快速沉积速率和生长特性归因于E - CVI过程中热梯度的形成和电磁场的建立。该复合材料在约1700°C下暴露于5次氧乙炔火焰1000秒后,具有1.84 g/cm的低密度、325 MPa的高弯曲强度和0.38 μm/s的低线性烧蚀率。