Suppr超能文献

具有不同界面相的3D-SiC/SiC复合材料的力学性能与失效行为

Mechanical Properties and Failure Behavior of 3D-SiC/SiC Composites with Different Interphases.

作者信息

Ma Deng-Hao, Jin En-Ze, Li Jun-Ping, Hou Zhen-Hua, Yin Jian, Sun Xin, Fang Jin-Ming, Gong Xiao-Dong, Huang Li-Na

机构信息

Science and Technology of Advanced Functional Composite Materials Laboratory, Aerospace Research Institute of Materials & Processing Technology, Beijing 100076, China.

Jiangxi Jiajie Xinda New Materials Technology Co., Ltd, Nanchang 330096, China.

出版信息

Scanning. 2020 Dec 9;2020:6678223. doi: 10.1155/2020/6678223. eCollection 2020.

Abstract

Continuous silicon carbide fiber-reinforced silicon carbide ceramic matrix composites (SiC/SiC) are promising as thermal structural materials. In this work, the microstructure and static mechanical properties of 3D-SiC/SiC with PyC, SiC, and PyC/SiC and without an interface prepared via polymer infiltration and pyrolysis (PIP) were investigated systematically in this paper. The results show that the microstructure and static mechanical properties of SiC/SiC with an interphase layer were superior to the composites without an interlayer, and the interface debondings are existing in the composite without an interphase, resulting in a weak interface bonding. When the interphase is introduced, the interfacial shear strength is improved, the crack can be deflected, and the fracture energy can be absorbed. Meanwhile, the shear strength of the composites with PyC and PyC/SiC interfaces was 118 MPa and 124 MPa, respectively, and showing little difference in bending properties. This indicates that the sublayer SiC of the PyC/SiC multilayer interface limits the binding state and the plastic deformation of PyC interphase, and it is helpful to improve the mechanical properties of SiC/SiC.

摘要

连续碳化硅纤维增强碳化硅陶瓷基复合材料(SiC/SiC)作为热结构材料具有广阔前景。在本工作中,本文系统研究了通过聚合物浸渍和热解(PIP)制备的具有PyC、SiC和PyC/SiC且无界面的三维SiC/SiC的微观结构和静态力学性能。结果表明,具有界面层的SiC/SiC的微观结构和静态力学性能优于无中间层的复合材料,且无中间相的复合材料中存在界面脱粘现象,导致界面结合较弱。引入中间相时,界面剪切强度提高,裂纹可发生偏转,断裂能可被吸收。同时,具有PyC和PyC/SiC界面的复合材料的剪切强度分别为118MPa和124MPa,弯曲性能差异不大。这表明PyC/SiC多层界面的子层SiC限制了PyC中间相的结合状态和塑性变形,有助于提高SiC/SiC的力学性能。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验