THE ESTIMATION OF FATIGUE LIMIT OF 2D PLAIN-WOVEN T300 CARBON-FIBER/SIC MATRIX COMPOSITE

The fatigue property data of 2 D plain-woven T300 carbon-fiber/SiC matrix composite material, which was published in literatures since 1990, was collected and categorized. The fitting of the total life S-N curve was conducted on the collected data. According to the shape parameter a of the S-N curve...

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Main Authors: GAO DaiYang, YAO WeiXing, WU Tao
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2018-01-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2018.06.029
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author GAO DaiYang
YAO WeiXing
WU Tao
author_facet GAO DaiYang
YAO WeiXing
WU Tao
author_sort GAO DaiYang
collection DOAJ
description The fatigue property data of 2 D plain-woven T300 carbon-fiber/SiC matrix composite material, which was published in literatures since 1990, was collected and categorized. The fitting of the total life S-N curve was conducted on the collected data. According to the shape parameter a of the S-N curve, T300 C/SiC material is classified into 3 categories. It is shown in the curve fitted results that the shape parameter a in the total life S-N curve represents the toughness of the material, in which case the larger parameter a is, the tougher the material is. Meanwhile the dimension parameter b represents the fatigue crack propagation rate, in which case the smaller parameter b is, the more sensitive to stress the fatigue damage is. On the basis of the fitted data, it is concluded that the endurance limit of 2 D plain-woven T300 carbon-fiber/SiC matrix composite material is approximately 70% of its strength.
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issn 1001-9669
language zho
publishDate 2018-01-01
publisher Editorial Office of Journal of Mechanical Strength
record_format Article
series Jixie qiangdu
spelling doaj-art-4db1e3bf68874cd2b70b0b848400805e2025-01-15T02:30:58ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692018-01-01401451145530603363THE ESTIMATION OF FATIGUE LIMIT OF 2D PLAIN-WOVEN T300 CARBON-FIBER/SIC MATRIX COMPOSITEGAO DaiYangYAO WeiXingWU TaoThe fatigue property data of 2 D plain-woven T300 carbon-fiber/SiC matrix composite material, which was published in literatures since 1990, was collected and categorized. The fitting of the total life S-N curve was conducted on the collected data. According to the shape parameter a of the S-N curve, T300 C/SiC material is classified into 3 categories. It is shown in the curve fitted results that the shape parameter a in the total life S-N curve represents the toughness of the material, in which case the larger parameter a is, the tougher the material is. Meanwhile the dimension parameter b represents the fatigue crack propagation rate, in which case the smaller parameter b is, the more sensitive to stress the fatigue damage is. On the basis of the fitted data, it is concluded that the endurance limit of 2 D plain-woven T300 carbon-fiber/SiC matrix composite material is approximately 70% of its strength.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2018.06.029Plain wovenC/SiC composite materialS-N CurveEndurance limit
spellingShingle GAO DaiYang
YAO WeiXing
WU Tao
THE ESTIMATION OF FATIGUE LIMIT OF 2D PLAIN-WOVEN T300 CARBON-FIBER/SIC MATRIX COMPOSITE
Jixie qiangdu
Plain woven
C/SiC composite material
S-N Curve
Endurance limit
title THE ESTIMATION OF FATIGUE LIMIT OF 2D PLAIN-WOVEN T300 CARBON-FIBER/SIC MATRIX COMPOSITE
title_full THE ESTIMATION OF FATIGUE LIMIT OF 2D PLAIN-WOVEN T300 CARBON-FIBER/SIC MATRIX COMPOSITE
title_fullStr THE ESTIMATION OF FATIGUE LIMIT OF 2D PLAIN-WOVEN T300 CARBON-FIBER/SIC MATRIX COMPOSITE
title_full_unstemmed THE ESTIMATION OF FATIGUE LIMIT OF 2D PLAIN-WOVEN T300 CARBON-FIBER/SIC MATRIX COMPOSITE
title_short THE ESTIMATION OF FATIGUE LIMIT OF 2D PLAIN-WOVEN T300 CARBON-FIBER/SIC MATRIX COMPOSITE
title_sort estimation of fatigue limit of 2d plain woven t300 carbon fiber sic matrix composite
topic Plain woven
C/SiC composite material
S-N Curve
Endurance limit
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2018.06.029
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