Gong Zhiyou, Xu Zhongkai, Zhang Jian, Guo Ruisong, Han Yao, Sun Xiaohong, Yuan Zhuang, Zhao Xinqi, Zhang Bingqing, Zheng Chunming
Key Laboratory of Advanced Ceramics and Machining Technology of Ministry of Education, School of Materials Science and Engineering, Tianjin University, Tianjin 300072, China.
Aerospace Institute of Advanced Materials & Processing Technology, Beijing 100074, China.
Materials (Basel). 2024 May 20;17(10):2457. doi: 10.3390/ma17102457.
SiBCN ceramics based on SiC, BN and SiN structures have good comprehensive properties such as high-temperature resistance, oxidation resistance, creep resistance and long life, which makes it one of the very promising ceramic material systems in military and aerospace fields, etc. In this study, SiBCN ceramics, as well as SiN/BN/SiBCN microcomposites, were prepared by a polymer infiltration pyrolysis method using PBSZ as the polymer precursor. The PBSZ was completely ceramized by pyrolysis at 900 °C. The weight loss and elemental bonding forms of the products after the pyrolysis of the precursors hardly changed from 600 °C to 900 °C. After pyrolysis at 600 °C for 4 h and using the BN coating obtained from twice deposition as the interfacial phase, a more desirable weak interface of fiber/matrix with a binding strength of 21.96 ± 2.01 MPa can be obtained. SiN/BN/SiBCN ceramic matrix microcomposites prepared under the same pyrolysis conditions have a relatively good tensile strength of 111.10 MPa while retaining a weak interface between the fibers and the matrix. The results of the study provide more theoretical and methodological support for the application of new composite structural ceramic material systems.
基于SiC、BN和SiN结构的SiBCN陶瓷具有耐高温、抗氧化、抗蠕变和长寿命等良好的综合性能,这使其成为军事和航空航天等领域非常有前景的陶瓷材料体系之一。在本研究中,以PBSZ为聚合物前驱体,采用聚合物浸渍热解法制备了SiBCN陶瓷以及SiN/BN/SiBCN微复合材料。PBSZ在900℃热解后完全陶瓷化。前驱体热解后产物的失重和元素键合形式在600℃至900℃之间几乎没有变化。在600℃热解4小时并使用两次沉积得到的BN涂层作为界面相后,可以获得更理想的纤维/基体弱界面,其结合强度为21.96±2.01MPa。在相同热解条件下制备的SiN/BN/SiBCN陶瓷基微复合材料具有相对较好的拉伸强度,为111.10MPa,同时在纤维和基体之间保留了弱界面。该研究结果为新型复合结构陶瓷材料体系的应用提供了更多的理论和方法支持。