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Interfacial Reactions and Mechanical Properties Studies of C-Coated and C/B(4)C Duplex-Coated SiC Fiber-Reinforced Ti(2)AlNb Composites

Continuous SiC fiber-reinforced Ti(2)AlNb matrix composites have a great potential for high-temperature aviation structure applications, and their properties strongly depend on the microstructure of the interfacial reaction layer. Notably, introducing diffusion barrier coatings has still been a popu...

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Autores principales: Zhang, Shuming, Wang, Minjuan, Wen, Mao, Chen, Jianhong, Li, Hu, Xie, Chuan, Fan, Wangtengfei, Wang, Qingfeng, Huang, Hao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6811754/
https://www.ncbi.nlm.nih.gov/pubmed/31590433
http://dx.doi.org/10.3390/ma12193257
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author Zhang, Shuming
Wang, Minjuan
Wen, Mao
Chen, Jianhong
Li, Hu
Xie, Chuan
Fan, Wangtengfei
Wang, Qingfeng
Huang, Hao
author_facet Zhang, Shuming
Wang, Minjuan
Wen, Mao
Chen, Jianhong
Li, Hu
Xie, Chuan
Fan, Wangtengfei
Wang, Qingfeng
Huang, Hao
author_sort Zhang, Shuming
collection PubMed
description Continuous SiC fiber-reinforced Ti(2)AlNb matrix composites have a great potential for high-temperature aviation structure applications, and their properties strongly depend on the microstructure of the interfacial reaction layer. Notably, introducing diffusion barrier coatings has still been a popular strategy for optimizing the interfacial structure and interfacial properties of SiC(f)/Ti. In this work, C coating and C/B(4)C duplex coating were successfully fabricated onto SiC fibers via chemical vapor deposition (CVD), then consolidated into the SiC(f)/C/Ti(2)AlNb and the SiC(f)/C/B(4)C/Ti(2)AlNb composites, respectively, via hot isostatic pressing (HIP) under the condition of 970 °C, 150 MPa, 120 min, and finally furnace cooled to room temperature. The C- and C/B(4)C-dominated interfacial reactions in the SiC(f)/C/Ti(2)AlNb and the SiC(f)/C/B(4)C/Ti(2)AlNb were explored, revealing two different reaction products sequences: The different-sized TiC and the coarse-grained (Ti,Nb)C + AlNb(3) for the SiC(f)/C/Ti(2)AlNb; and the fine-grained TiB(2) + TiC, the needle-shaped (Ti,Nb)B(2)/NbB + (Ti,Nb)C, the coarse-grained (Ti,Nb)C + AlNb(2) for the SiC(f)/C/B(4)C/Ti(2)AlNb. Annealing experiments were further carried out to verify the different reaction kinetics caused by C coating and C/B(4)C duplex coating. The reaction layer (RL)-dominated interfacial strength and tensile strength estimations showed that higher interface strength and tensile strength occurred in the SiC(f)/C/Ti(2)AlNb instead of the SiC(f)/C/B(4)C/Ti(2)AlNb, when the same failure mode of fiber push-out took place.
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spelling pubmed-68117542019-11-18 Interfacial Reactions and Mechanical Properties Studies of C-Coated and C/B(4)C Duplex-Coated SiC Fiber-Reinforced Ti(2)AlNb Composites Zhang, Shuming Wang, Minjuan Wen, Mao Chen, Jianhong Li, Hu Xie, Chuan Fan, Wangtengfei Wang, Qingfeng Huang, Hao Materials (Basel) Article Continuous SiC fiber-reinforced Ti(2)AlNb matrix composites have a great potential for high-temperature aviation structure applications, and their properties strongly depend on the microstructure of the interfacial reaction layer. Notably, introducing diffusion barrier coatings has still been a popular strategy for optimizing the interfacial structure and interfacial properties of SiC(f)/Ti. In this work, C coating and C/B(4)C duplex coating were successfully fabricated onto SiC fibers via chemical vapor deposition (CVD), then consolidated into the SiC(f)/C/Ti(2)AlNb and the SiC(f)/C/B(4)C/Ti(2)AlNb composites, respectively, via hot isostatic pressing (HIP) under the condition of 970 °C, 150 MPa, 120 min, and finally furnace cooled to room temperature. The C- and C/B(4)C-dominated interfacial reactions in the SiC(f)/C/Ti(2)AlNb and the SiC(f)/C/B(4)C/Ti(2)AlNb were explored, revealing two different reaction products sequences: The different-sized TiC and the coarse-grained (Ti,Nb)C + AlNb(3) for the SiC(f)/C/Ti(2)AlNb; and the fine-grained TiB(2) + TiC, the needle-shaped (Ti,Nb)B(2)/NbB + (Ti,Nb)C, the coarse-grained (Ti,Nb)C + AlNb(2) for the SiC(f)/C/B(4)C/Ti(2)AlNb. Annealing experiments were further carried out to verify the different reaction kinetics caused by C coating and C/B(4)C duplex coating. The reaction layer (RL)-dominated interfacial strength and tensile strength estimations showed that higher interface strength and tensile strength occurred in the SiC(f)/C/Ti(2)AlNb instead of the SiC(f)/C/B(4)C/Ti(2)AlNb, when the same failure mode of fiber push-out took place. MDPI 2019-10-06 /pmc/articles/PMC6811754/ /pubmed/31590433 http://dx.doi.org/10.3390/ma12193257 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Shuming
Wang, Minjuan
Wen, Mao
Chen, Jianhong
Li, Hu
Xie, Chuan
Fan, Wangtengfei
Wang, Qingfeng
Huang, Hao
Interfacial Reactions and Mechanical Properties Studies of C-Coated and C/B(4)C Duplex-Coated SiC Fiber-Reinforced Ti(2)AlNb Composites
title Interfacial Reactions and Mechanical Properties Studies of C-Coated and C/B(4)C Duplex-Coated SiC Fiber-Reinforced Ti(2)AlNb Composites
title_full Interfacial Reactions and Mechanical Properties Studies of C-Coated and C/B(4)C Duplex-Coated SiC Fiber-Reinforced Ti(2)AlNb Composites
title_fullStr Interfacial Reactions and Mechanical Properties Studies of C-Coated and C/B(4)C Duplex-Coated SiC Fiber-Reinforced Ti(2)AlNb Composites
title_full_unstemmed Interfacial Reactions and Mechanical Properties Studies of C-Coated and C/B(4)C Duplex-Coated SiC Fiber-Reinforced Ti(2)AlNb Composites
title_short Interfacial Reactions and Mechanical Properties Studies of C-Coated and C/B(4)C Duplex-Coated SiC Fiber-Reinforced Ti(2)AlNb Composites
title_sort interfacial reactions and mechanical properties studies of c-coated and c/b(4)c duplex-coated sic fiber-reinforced ti(2)alnb composites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6811754/
https://www.ncbi.nlm.nih.gov/pubmed/31590433
http://dx.doi.org/10.3390/ma12193257
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