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Published in: Journal of Sol-Gel Science and Technology 3/2019

18-06-2019 | Original Paper: Industrial and technological applications of sol–gel and hybrid materials

Improvement of high-temperature resistance on carbon fiber felt/portland cement composite friction material by Al2O3 sol–gel coating

Authors: Lixin Xu, Mengyu Min, Shang Yang, Aixiong Jiang, Zhiwei Yang, Shuiyuen Chu

Published in: Journal of Sol-Gel Science and Technology | Issue 3/2019

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Abstract

The extrusion impregnation method is used to prepare carbon fiber felt/portland cement (CFF/PC) composite materials. The samples are placed into muffle furnace for ablation, but carbon fiber is oxidized at around 450 °C. To improve the oxidation resistance of carbon fiber, Al2O3 sol–gel (AS) is prepared to coat the surface of carbon fiber. The extrusion impregnation method is also used to prepare AS–CFF/PC composite materials. The samples are also ablated into muffle furnace at different temperatures. The results indicate that carbon fiber is uniformly dispersed and closely arranged in the matrix, presenting a three-dimensional network distribution. The bending and compressive strengths of CFF/PC composite materials are increased by 200% and 12% when compared with that of PC material at room temperature. The AS coating layer can effectively improve the antioxidant capacity of carbon fiber at high temperatures. The comparison reveals that AS–CFF/PC composite materials exhibit improved high-temperature resistance performance.

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Metadata
Title
Improvement of high-temperature resistance on carbon fiber felt/portland cement composite friction material by Al2O3 sol–gel coating
Authors
Lixin Xu
Mengyu Min
Shang Yang
Aixiong Jiang
Zhiwei Yang
Shuiyuen Chu
Publication date
18-06-2019
Publisher
Springer US
Published in
Journal of Sol-Gel Science and Technology / Issue 3/2019
Print ISSN: 0928-0707
Electronic ISSN: 1573-4846
DOI
https://doi.org/10.1007/s10971-019-05050-y

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