Effect of three-directional orthogonal preform weaving parameters on properties of C/C composites

Taking the three-directional orthogonal preform with different Z-direction fiber distance as the research object, the carbon/carbon (C/C) composites were prepared by the combination of chemical vapor infiltration and resin impregnation, and the effect of weaving parameters on the microstructure and...

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Main Authors: DENG Qilin, YANG Min, YAO Yumin, LI Hong, REN Musu, SUN Jinliang
Format: Article
Language:zho
Published: Journal of Materials Engineering 2022-05-01
Series:Cailiao gongcheng
Subjects:
Online Access:http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2021.000342
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author DENG Qilin
YANG Min
YAO Yumin
LI Hong
REN Musu
SUN Jinliang
author_facet DENG Qilin
YANG Min
YAO Yumin
LI Hong
REN Musu
SUN Jinliang
author_sort DENG Qilin
collection DOAJ
description Taking the three-directional orthogonal preform with different Z-direction fiber distance as the research object, the carbon/carbon (C/C) composites were prepared by the combination of chemical vapor infiltration and resin impregnation, and the effect of weaving parameters on the microstructure and bending performance of C/C composites were studied. The calculation model was established by taking the smallest repeated structure of three-directional orthogonal preform as a unit, and the relationship between fiber content and weaving parameters of three-directional preform was obtained and verified. The results show that the fiber content of preform is increased with the decrease of Z-direction fiber distance and X, Y-direction fiber layer distance; when the Z-direction fiber distance is increased, the twist deformation of the fiber interweave becomes larger, resulting in the change of the pore structure of the preform; under the same densification process, the change of pore structure affects the composition and distribution of carbon matrix in C/C composites, but has no effect on the morphology of carbon matrix; when the fiber content in X, Y-direction is increased and the distance between fibers in Z-direction is decreased, the flexural strength of the C/C composites is higher.
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spelling doaj.art-1011c0efbbc84e53ae357a321e9ff1c52023-01-02T16:46:24ZzhoJournal of Materials EngineeringCailiao gongcheng1001-43812022-05-0150513914610.11868/j.issn.1001-4381.2021.00034220220514Effect of three-directional orthogonal preform weaving parameters on properties of C/C compositesDENG Qilin0YANG Min1YAO Yumin2LI Hong3REN Musu4SUN Jinliang5Composite Research Center of Shanghai University, Shanghai 200444, ChinaComposite Research Center of Shanghai University, Shanghai 200444, ChinaComposite Research Center of Shanghai University, Shanghai 200444, ChinaComposite Research Center of Shanghai University, Shanghai 200444, ChinaComposite Research Center of Shanghai University, Shanghai 200444, ChinaComposite Research Center of Shanghai University, Shanghai 200444, ChinaTaking the three-directional orthogonal preform with different Z-direction fiber distance as the research object, the carbon/carbon (C/C) composites were prepared by the combination of chemical vapor infiltration and resin impregnation, and the effect of weaving parameters on the microstructure and bending performance of C/C composites were studied. The calculation model was established by taking the smallest repeated structure of three-directional orthogonal preform as a unit, and the relationship between fiber content and weaving parameters of three-directional preform was obtained and verified. The results show that the fiber content of preform is increased with the decrease of Z-direction fiber distance and X, Y-direction fiber layer distance; when the Z-direction fiber distance is increased, the twist deformation of the fiber interweave becomes larger, resulting in the change of the pore structure of the preform; under the same densification process, the change of pore structure affects the composition and distribution of carbon matrix in C/C composites, but has no effect on the morphology of carbon matrix; when the fiber content in X, Y-direction is increased and the distance between fibers in Z-direction is decreased, the flexural strength of the C/C composites is higher.http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2021.000342three-directional orthogonal preformweaving parameterfiber contentmicro-morphologybending property
spellingShingle DENG Qilin
YANG Min
YAO Yumin
LI Hong
REN Musu
SUN Jinliang
Effect of three-directional orthogonal preform weaving parameters on properties of C/C composites
Cailiao gongcheng
three-directional orthogonal preform
weaving parameter
fiber content
micro-morphology
bending property
title Effect of three-directional orthogonal preform weaving parameters on properties of C/C composites
title_full Effect of three-directional orthogonal preform weaving parameters on properties of C/C composites
title_fullStr Effect of three-directional orthogonal preform weaving parameters on properties of C/C composites
title_full_unstemmed Effect of three-directional orthogonal preform weaving parameters on properties of C/C composites
title_short Effect of three-directional orthogonal preform weaving parameters on properties of C/C composites
title_sort effect of three directional orthogonal preform weaving parameters on properties of c c composites
topic three-directional orthogonal preform
weaving parameter
fiber content
micro-morphology
bending property
url http://jme.biam.ac.cn/CN/10.11868/j.issn.1001-4381.2021.000342
work_keys_str_mv AT dengqilin effectofthreedirectionalorthogonalpreformweavingparametersonpropertiesofcccomposites
AT yangmin effectofthreedirectionalorthogonalpreformweavingparametersonpropertiesofcccomposites
AT yaoyumin effectofthreedirectionalorthogonalpreformweavingparametersonpropertiesofcccomposites
AT lihong effectofthreedirectionalorthogonalpreformweavingparametersonpropertiesofcccomposites
AT renmusu effectofthreedirectionalorthogonalpreformweavingparametersonpropertiesofcccomposites
AT sunjinliang effectofthreedirectionalorthogonalpreformweavingparametersonpropertiesofcccomposites