简介概要

Microstructural and Mechanical Characterization of SiBNC Coated Carbon Fibers Prepared via PIP Method

来源期刊:Journal Of Wuhan University Of Technology Materials Science Edition2018年第4期

论文作者:刘勇 CUI Yongjie HAN Keqing 张辉 YU Muhuo

文章页码:783 - 787

摘    要:The preparation of SiBNC ceramic oxidation-resistant coating on carbon fiber via precursorsolution infiltration and pyrolysis(PIP) method was presented and discussed in detail. Moreover, the microstructures and the components of the coating were characterized. The experiment results showed that the 0.5% polyborosilazane(PBSZ) solution in the coating preparation gave fewer defects, in contrast with the 1% and the 5% PBSZ solutions. The strength of the carbon fiber coated with SiBNC-0.5 wt%(3.08 GPa) was decreased by 12%. Compared with uncoated carbon fiber, the starting oxidation temperature and the reaction activation energy of the coated carbon fibers(SiBNC-0.5 wt%) have increased by about 300 ℃ and 104%, respectively. The oxidation resistance of the SiBNC coated carbon fiber was improved dramatically.

详情信息展示

Microstructural and Mechanical Characterization of SiBNC Coated Carbon Fibers Prepared via PIP Method

刘勇,CUI Yongjie,HAN Keqing,张辉,YU Muhuo

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering,Donghua University

摘 要:The preparation of SiBNC ceramic oxidation-resistant coating on carbon fiber via precursorsolution infiltration and pyrolysis(PIP) method was presented and discussed in detail. Moreover, the microstructures and the components of the coating were characterized. The experiment results showed that the 0.5% polyborosilazane(PBSZ) solution in the coating preparation gave fewer defects, in contrast with the 1% and the 5% PBSZ solutions. The strength of the carbon fiber coated with SiBNC-0.5 wt%(3.08 GPa) was decreased by 12%. Compared with uncoated carbon fiber, the starting oxidation temperature and the reaction activation energy of the coated carbon fibers(SiBNC-0.5 wt%) have increased by about 300 ℃ and 104%, respectively. The oxidation resistance of the SiBNC coated carbon fiber was improved dramatically.

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