Quartz fiber fabric is widely used in national defense, military and aerospace industries due to its good high-temperature resistance, chemical stability and excellent thermal shock resistance. However, the tendency of quartz fiber fabric to undergo thermal degradation due to crystallization at high temperature may destroy its high-temperature performance, particularly its high-temperature mechanical properties. In this study, an aluminum oxide (Al2O3) ceramic coating was synthesized on the surface of two-dimensional quartz fiber fabric in aqueous solution near room temperature. The surface morphology and chemical composition were studied to evaluate the quality of the coating by scanning electron microscopy, atomic force microscopy, X-ray photoelectron spectroscopy and Fourier transform infrared spectroscopy. The annealing behavior at high temperature was evaluated by using an electronic universal testing machine after high-temperature processing. The annealing behavior of the aluminum oxide coating could be improved effectively. The maximum load that the coated fabric can bear was 2.5 times higher than that of the original fabric, proving the superior high-temperature mechanical properties of the coated fabric. The coating on the surface of the fiber could block the damage of high temperature to the quartz fiber, improving the crystallization phenomenon of the quartz fiber at high temperature, followed by improvement in the high-temperature mechanical properties of the fabric.
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1 July 2023
Research Article|
June 06 2022
An investigation of Al2O3 coating on quartz fiber fabric in aqueous solution near room temperature Available to Purchase
Yongfu Zhang;
Yongfu Zhang
Student
Department of Materials Science and Engineering, Beijing Institute of Technology, Beijing, China
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Yan Xiang;
Yan Xiang
Postgraduate student
Department of Materials Science and Engineering, Beijing Institute of Technology, Beijing, China
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Yunjie Yang;
Yunjie Yang
Postgraduate student
Department of Materials Science and Engineering, Beijing Institute of Technology, Beijing, China
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Xiaolin Wei;
Xiaolin Wei
Postgraduate student
Department of Materials Science and Engineering, Beijing Institute of Technology, Beijing, China
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Ben Ma;
Ben Ma
Postgraduate student
Department of Materials Science and Engineering, Beijing Institute of Technology, Beijing, China
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Weiwei Chen;
Department of Materials Science and Engineering, Beijing Institute of Technology, Beijing, China
(corresponding author: wwchen@bit.edu.cn)
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Huanwu Cheng;
Huanwu Cheng
Associate Researcher
Department of Materials Science and Engineering, Beijing Institute of Technology, Beijing, China
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Lu Wang;
Lu Wang
Professor
Department of Materials Science and Engineering, Beijing Institute of Technology, Beijing, China
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Lin Lu;
Lin Lu
Associate Professor
Material R&D and Assembly Center, Beijing System Design Institute of Electro-Mechanic Engineering, Beijing, China
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Maoyuan Li;
Maoyuan Li
Professor
Beijing System Design Institute of Electro-Mechanic Engineering, Beijing, China
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Haifeng Fu
Haifeng Fu
Associate Professor
Journal of Materials Heat Treatment, Beijing Research Institute of Mechanical and Electrical Technology Ltd, Beijing, China
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(corresponding author: wwchen@bit.edu.cn)
Publisher: Emerald Publishing
Received:
March 06 2022
Accepted:
May 09 2022
Online ISSN: 2050-6260
Print ISSN: 2050-6252
ICE Publishing: All rights reserved
2023
Surface Innovations (2023) 11 (4): 250–261.
Article history
Received:
March 06 2022
Accepted:
May 09 2022
Citation
Zhang Y, Xiang Y, Yang Y, Wei X, Ma B, Chen W, Cheng H, Wang L, Lu L, Li M, Fu H (2023), "An investigation of Al2O3 coating on quartz fiber fabric in aqueous solution near room temperature". Surface Innovations, Vol. 11 No. 4 pp. 250–261, doi: https://doi.org/10.1680/jsuin.22.00035
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