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Design, Fabrication, and Mechanical Properties of T-700(TM) Multiaxial-Warp-Knitting–Needled–C/SiC Composite and Pin

In this paper, the 12k T-700(TM) Multiaxial-Warp-Knitting–Needle (MWK–N) C/SiC composite and pin were designed and fabricated using the isothermal chemical vapor infiltration (ICVI) method. The composite’s microstructure and mechanical properties were examined by subjection to tensile and interlamin...

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Detalles Bibliográficos
Autores principales: Luo, Xiao, He, Jiangyi, Liu, Xiaochong, Xu, Youliang, Li, Jian, Guo, Xiaojun, Wang, Qianru, Li, Longbiao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8950974/
https://www.ncbi.nlm.nih.gov/pubmed/35329789
http://dx.doi.org/10.3390/ma15062338
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author Luo, Xiao
He, Jiangyi
Liu, Xiaochong
Xu, Youliang
Li, Jian
Guo, Xiaojun
Wang, Qianru
Li, Longbiao
author_facet Luo, Xiao
He, Jiangyi
Liu, Xiaochong
Xu, Youliang
Li, Jian
Guo, Xiaojun
Wang, Qianru
Li, Longbiao
author_sort Luo, Xiao
collection PubMed
description In this paper, the 12k T-700(TM) Multiaxial-Warp-Knitting–Needle (MWK–N) C/SiC composite and pin were designed and fabricated using the isothermal chemical vapor infiltration (ICVI) method. The composite’s microstructure and mechanical properties were examined by subjection to tensile and interlaminar shear tests. Three types of double-shear tests were conducted for C/SiC pins, including shear loading perpendicularly, along, and at 45° off-axial to the lamination. The fracture surface of the tensile and shear failure specimens was observed under scanning electronic microscope (SEM). The relationships between the composite’s microstructure, mechanical properties, and damage mechanisms were established. The composite’s average tensile strength was σ(uts) = 68.3 MPa and the average interlaminar shear strength was τ(u) = 38.7 MPa. For MWK–N–C/SiC pins, the double-shear strength was τ(u) = 76.5 MPa, 99.7 MPa, and 79.6 MPa for test types I, II, and III, respectively. Compared with MWK–C/SiC pins, the double-shear strength of MWK–N–C/SiC pins all decreased, i.e., 26.7%, 50.8%, and 8% for test types I, II, and III, respectively. The MWK–N–C/SiC composite and pins possessed high interlaminar shear strength and double-shear strength, due to the needled fiber in the thickness direction, low porosity (10–15%), and high composite density (2.0 g/cm(3)).
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spelling pubmed-89509742022-03-26 Design, Fabrication, and Mechanical Properties of T-700(TM) Multiaxial-Warp-Knitting–Needled–C/SiC Composite and Pin Luo, Xiao He, Jiangyi Liu, Xiaochong Xu, Youliang Li, Jian Guo, Xiaojun Wang, Qianru Li, Longbiao Materials (Basel) Article In this paper, the 12k T-700(TM) Multiaxial-Warp-Knitting–Needle (MWK–N) C/SiC composite and pin were designed and fabricated using the isothermal chemical vapor infiltration (ICVI) method. The composite’s microstructure and mechanical properties were examined by subjection to tensile and interlaminar shear tests. Three types of double-shear tests were conducted for C/SiC pins, including shear loading perpendicularly, along, and at 45° off-axial to the lamination. The fracture surface of the tensile and shear failure specimens was observed under scanning electronic microscope (SEM). The relationships between the composite’s microstructure, mechanical properties, and damage mechanisms were established. The composite’s average tensile strength was σ(uts) = 68.3 MPa and the average interlaminar shear strength was τ(u) = 38.7 MPa. For MWK–N–C/SiC pins, the double-shear strength was τ(u) = 76.5 MPa, 99.7 MPa, and 79.6 MPa for test types I, II, and III, respectively. Compared with MWK–C/SiC pins, the double-shear strength of MWK–N–C/SiC pins all decreased, i.e., 26.7%, 50.8%, and 8% for test types I, II, and III, respectively. The MWK–N–C/SiC composite and pins possessed high interlaminar shear strength and double-shear strength, due to the needled fiber in the thickness direction, low porosity (10–15%), and high composite density (2.0 g/cm(3)). MDPI 2022-03-21 /pmc/articles/PMC8950974/ /pubmed/35329789 http://dx.doi.org/10.3390/ma15062338 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Luo, Xiao
He, Jiangyi
Liu, Xiaochong
Xu, Youliang
Li, Jian
Guo, Xiaojun
Wang, Qianru
Li, Longbiao
Design, Fabrication, and Mechanical Properties of T-700(TM) Multiaxial-Warp-Knitting–Needled–C/SiC Composite and Pin
title Design, Fabrication, and Mechanical Properties of T-700(TM) Multiaxial-Warp-Knitting–Needled–C/SiC Composite and Pin
title_full Design, Fabrication, and Mechanical Properties of T-700(TM) Multiaxial-Warp-Knitting–Needled–C/SiC Composite and Pin
title_fullStr Design, Fabrication, and Mechanical Properties of T-700(TM) Multiaxial-Warp-Knitting–Needled–C/SiC Composite and Pin
title_full_unstemmed Design, Fabrication, and Mechanical Properties of T-700(TM) Multiaxial-Warp-Knitting–Needled–C/SiC Composite and Pin
title_short Design, Fabrication, and Mechanical Properties of T-700(TM) Multiaxial-Warp-Knitting–Needled–C/SiC Composite and Pin
title_sort design, fabrication, and mechanical properties of t-700(tm) multiaxial-warp-knitting–needled–c/sic composite and pin
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8950974/
https://www.ncbi.nlm.nih.gov/pubmed/35329789
http://dx.doi.org/10.3390/ma15062338
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