Microstructure and mechanical properties of multilayer SiC nanofiber paper‐reinforced SiC composites by the NITE method

Author:

Chen Hao1,Chen Jianjun12ORCID,Yang Jiahao1,Ahmad Zahoor1ORCID,Zhu Mingming1,Xiong Yilian1,Tao Jiyu1,Li Jinxia1

Affiliation:

1. Institute of Advanced Ceramic Material & Fiber, School of Materials Science and Engineering Zhejiang Sci‐Tech University Hangzhou China

2. Science and Technology on Advanced Ceramic Fibers and Composites Laboratory National University of Defense Technology Changsha China

Abstract

AbstractIn this work, stacked SiC fibers paper‐reinforced SiC ceramic matrix composites (SiCnf/SiC CMCs) were prepared by nanoimpregnation and transient eutectic (NITE) process using ultra‐long single‐crystal SiC nanofibers. The effect of the SiCnf surface modification via boron nitride (BN) interphase deposition as well as the sintering additive (Al2O3–Y2O3) content on the density, microstructure, and mechanical properties of SiCnf/SiC CMCs has been investigated systematically. The results revealed that the laminated SiCnf/SiC CMCs feature a significant saw‐tooth‐like curve on the load–displacement test, which indicates that the obtained laminated structure with the weak interlayer binding owning to the BN coating treatment possesses significant toughening to the SiC ceramics. Specifically, the SiCnf/SiC CMCs with the sintering additive content of 12 wt% revealed a fracture toughness of over 10 MPa m1/2 after 60 min of BN interface deposition, which is 104.31% higher than that of the composites prepared without BN coating.

Funder

Natural Science Foundation of Zhejiang Province

Publisher

Wiley

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