Experimental study on the fabrication, high-temperature properties and failure analysis of 3D seven-directional braided composites under compression
Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure...
Ausführliche Beschreibung
Autor*in: |
Li, Dian-sen [verfasserIn] |
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E-Artikel |
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Sprache: |
Englisch |
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2021transfer abstract |
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Übergeordnetes Werk: |
Enthalten in: Versatile, but not focused, traffic offenders are more likely to be at fault for a fatal crash - Davey, Benjamin ELSEVIER, 2022, an international journal, Amsterdam |
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Übergeordnetes Werk: |
volume:268 ; year:2021 ; day:15 ; month:07 ; pages:0 |
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DOI / URN: |
10.1016/j.compstruct.2021.113934 |
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Katalog-ID: |
ELV054069211 |
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245 | 1 | 0 | |a Experimental study on the fabrication, high-temperature properties and failure analysis of 3D seven-directional braided composites under compression |
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520 | |a Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure mechanism is evaluated using Macro-fracture and SEM micrographs. The results show that as temperature increases, the stress vs. strain curves decrease monotonically and present nonlinearity feature. Meanwhile, the out-of-plane compression properties among three loading direction modes is the best, following by longitudinal, and transverse is the worst. 3D7d structure significantly improves the out-of-plane properties compared to 3D6d, 3D5d and 3D4d structure. Meanwhile, it also makes the transverse properties higher than those of 3D5d and 3D4d structure. Moreover, failure mechanism of 3D7d braided composites varies with loading mode and temperature. Out-of-plane compression shows multiple 45° shear failure, and compacted gradually. Longitudinal compression behaves as local outward expansion and multiple shear features along the braiding yarn/matrix interface. Transverse compression exhibits shear fracture at 45° in-plane direction. At high temperatures, the shear fracture feature still dominated the main failure. The matrix gets soft, cracks and comes plastic, and the interfacial adhesion of fiber/matrix is significantly reduced. | ||
520 | |a Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure mechanism is evaluated using Macro-fracture and SEM micrographs. The results show that as temperature increases, the stress vs. strain curves decrease monotonically and present nonlinearity feature. Meanwhile, the out-of-plane compression properties among three loading direction modes is the best, following by longitudinal, and transverse is the worst. 3D7d structure significantly improves the out-of-plane properties compared to 3D6d, 3D5d and 3D4d structure. Meanwhile, it also makes the transverse properties higher than those of 3D5d and 3D4d structure. Moreover, failure mechanism of 3D7d braided composites varies with loading mode and temperature. Out-of-plane compression shows multiple 45° shear failure, and compacted gradually. Longitudinal compression behaves as local outward expansion and multiple shear features along the braiding yarn/matrix interface. Transverse compression exhibits shear fracture at 45° in-plane direction. At high temperatures, the shear fracture feature still dominated the main failure. The matrix gets soft, cracks and comes plastic, and the interfacial adhesion of fiber/matrix is significantly reduced. | ||
650 | 7 | |a Braided composites |2 Elsevier | |
650 | 7 | |a Failure morphology |2 Elsevier | |
650 | 7 | |a 3D seven-directional braiding |2 Elsevier | |
650 | 7 | |a High-temperature properties |2 Elsevier | |
700 | 1 | |a Yang, Ying |4 oth | |
700 | 1 | |a Jiang, Lei |4 oth | |
773 | 0 | 8 | |i Enthalten in |n Elsevier |a Davey, Benjamin ELSEVIER |t Versatile, but not focused, traffic offenders are more likely to be at fault for a fatal crash |d 2022 |d an international journal |g Amsterdam |w (DE-627)ELV007891687 |
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10.1016/j.compstruct.2021.113934 doi /cbs_pica/cbs_olc/import_discovery/elsevier/einzuspielen/GBV00000000001425.pica (DE-627)ELV054069211 (ELSEVIER)S0263-8223(21)00394-9 DE-627 ger DE-627 rakwb eng 690 VZ 50.17 bkl 55.80 bkl 44.80 bkl Li, Dian-sen verfasserin aut Experimental study on the fabrication, high-temperature properties and failure analysis of 3D seven-directional braided composites under compression 2021transfer abstract nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure mechanism is evaluated using Macro-fracture and SEM micrographs. The results show that as temperature increases, the stress vs. strain curves decrease monotonically and present nonlinearity feature. Meanwhile, the out-of-plane compression properties among three loading direction modes is the best, following by longitudinal, and transverse is the worst. 3D7d structure significantly improves the out-of-plane properties compared to 3D6d, 3D5d and 3D4d structure. Meanwhile, it also makes the transverse properties higher than those of 3D5d and 3D4d structure. Moreover, failure mechanism of 3D7d braided composites varies with loading mode and temperature. Out-of-plane compression shows multiple 45° shear failure, and compacted gradually. Longitudinal compression behaves as local outward expansion and multiple shear features along the braiding yarn/matrix interface. Transverse compression exhibits shear fracture at 45° in-plane direction. At high temperatures, the shear fracture feature still dominated the main failure. The matrix gets soft, cracks and comes plastic, and the interfacial adhesion of fiber/matrix is significantly reduced. Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure mechanism is evaluated using Macro-fracture and SEM micrographs. The results show that as temperature increases, the stress vs. strain curves decrease monotonically and present nonlinearity feature. Meanwhile, the out-of-plane compression properties among three loading direction modes is the best, following by longitudinal, and transverse is the worst. 3D7d structure significantly improves the out-of-plane properties compared to 3D6d, 3D5d and 3D4d structure. Meanwhile, it also makes the transverse properties higher than those of 3D5d and 3D4d structure. Moreover, failure mechanism of 3D7d braided composites varies with loading mode and temperature. Out-of-plane compression shows multiple 45° shear failure, and compacted gradually. Longitudinal compression behaves as local outward expansion and multiple shear features along the braiding yarn/matrix interface. Transverse compression exhibits shear fracture at 45° in-plane direction. At high temperatures, the shear fracture feature still dominated the main failure. The matrix gets soft, cracks and comes plastic, and the interfacial adhesion of fiber/matrix is significantly reduced. Braided composites Elsevier Failure morphology Elsevier 3D seven-directional braiding Elsevier High-temperature properties Elsevier Yang, Ying oth Jiang, Lei oth Enthalten in Elsevier Davey, Benjamin ELSEVIER Versatile, but not focused, traffic offenders are more likely to be at fault for a fatal crash 2022 an international journal Amsterdam (DE-627)ELV007891687 volume:268 year:2021 day:15 month:07 pages:0 https://doi.org/10.1016/j.compstruct.2021.113934 Volltext GBV_USEFLAG_U GBV_ELV SYSFLAG_U 50.17 Sicherheitstechnik VZ 55.80 Verkehrswesen Transportwesen: Allgemeines VZ 44.80 Unfallmedizin Notfallmedizin VZ AR 268 2021 15 0715 0 |
spelling |
10.1016/j.compstruct.2021.113934 doi /cbs_pica/cbs_olc/import_discovery/elsevier/einzuspielen/GBV00000000001425.pica (DE-627)ELV054069211 (ELSEVIER)S0263-8223(21)00394-9 DE-627 ger DE-627 rakwb eng 690 VZ 50.17 bkl 55.80 bkl 44.80 bkl Li, Dian-sen verfasserin aut Experimental study on the fabrication, high-temperature properties and failure analysis of 3D seven-directional braided composites under compression 2021transfer abstract nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure mechanism is evaluated using Macro-fracture and SEM micrographs. The results show that as temperature increases, the stress vs. strain curves decrease monotonically and present nonlinearity feature. Meanwhile, the out-of-plane compression properties among three loading direction modes is the best, following by longitudinal, and transverse is the worst. 3D7d structure significantly improves the out-of-plane properties compared to 3D6d, 3D5d and 3D4d structure. Meanwhile, it also makes the transverse properties higher than those of 3D5d and 3D4d structure. Moreover, failure mechanism of 3D7d braided composites varies with loading mode and temperature. Out-of-plane compression shows multiple 45° shear failure, and compacted gradually. Longitudinal compression behaves as local outward expansion and multiple shear features along the braiding yarn/matrix interface. Transverse compression exhibits shear fracture at 45° in-plane direction. At high temperatures, the shear fracture feature still dominated the main failure. The matrix gets soft, cracks and comes plastic, and the interfacial adhesion of fiber/matrix is significantly reduced. Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure mechanism is evaluated using Macro-fracture and SEM micrographs. The results show that as temperature increases, the stress vs. strain curves decrease monotonically and present nonlinearity feature. Meanwhile, the out-of-plane compression properties among three loading direction modes is the best, following by longitudinal, and transverse is the worst. 3D7d structure significantly improves the out-of-plane properties compared to 3D6d, 3D5d and 3D4d structure. Meanwhile, it also makes the transverse properties higher than those of 3D5d and 3D4d structure. Moreover, failure mechanism of 3D7d braided composites varies with loading mode and temperature. Out-of-plane compression shows multiple 45° shear failure, and compacted gradually. Longitudinal compression behaves as local outward expansion and multiple shear features along the braiding yarn/matrix interface. Transverse compression exhibits shear fracture at 45° in-plane direction. At high temperatures, the shear fracture feature still dominated the main failure. The matrix gets soft, cracks and comes plastic, and the interfacial adhesion of fiber/matrix is significantly reduced. Braided composites Elsevier Failure morphology Elsevier 3D seven-directional braiding Elsevier High-temperature properties Elsevier Yang, Ying oth Jiang, Lei oth Enthalten in Elsevier Davey, Benjamin ELSEVIER Versatile, but not focused, traffic offenders are more likely to be at fault for a fatal crash 2022 an international journal Amsterdam (DE-627)ELV007891687 volume:268 year:2021 day:15 month:07 pages:0 https://doi.org/10.1016/j.compstruct.2021.113934 Volltext GBV_USEFLAG_U GBV_ELV SYSFLAG_U 50.17 Sicherheitstechnik VZ 55.80 Verkehrswesen Transportwesen: Allgemeines VZ 44.80 Unfallmedizin Notfallmedizin VZ AR 268 2021 15 0715 0 |
allfields_unstemmed |
10.1016/j.compstruct.2021.113934 doi /cbs_pica/cbs_olc/import_discovery/elsevier/einzuspielen/GBV00000000001425.pica (DE-627)ELV054069211 (ELSEVIER)S0263-8223(21)00394-9 DE-627 ger DE-627 rakwb eng 690 VZ 50.17 bkl 55.80 bkl 44.80 bkl Li, Dian-sen verfasserin aut Experimental study on the fabrication, high-temperature properties and failure analysis of 3D seven-directional braided composites under compression 2021transfer abstract nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure mechanism is evaluated using Macro-fracture and SEM micrographs. The results show that as temperature increases, the stress vs. strain curves decrease monotonically and present nonlinearity feature. Meanwhile, the out-of-plane compression properties among three loading direction modes is the best, following by longitudinal, and transverse is the worst. 3D7d structure significantly improves the out-of-plane properties compared to 3D6d, 3D5d and 3D4d structure. Meanwhile, it also makes the transverse properties higher than those of 3D5d and 3D4d structure. Moreover, failure mechanism of 3D7d braided composites varies with loading mode and temperature. Out-of-plane compression shows multiple 45° shear failure, and compacted gradually. Longitudinal compression behaves as local outward expansion and multiple shear features along the braiding yarn/matrix interface. Transverse compression exhibits shear fracture at 45° in-plane direction. At high temperatures, the shear fracture feature still dominated the main failure. The matrix gets soft, cracks and comes plastic, and the interfacial adhesion of fiber/matrix is significantly reduced. Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure mechanism is evaluated using Macro-fracture and SEM micrographs. The results show that as temperature increases, the stress vs. strain curves decrease monotonically and present nonlinearity feature. Meanwhile, the out-of-plane compression properties among three loading direction modes is the best, following by longitudinal, and transverse is the worst. 3D7d structure significantly improves the out-of-plane properties compared to 3D6d, 3D5d and 3D4d structure. Meanwhile, it also makes the transverse properties higher than those of 3D5d and 3D4d structure. Moreover, failure mechanism of 3D7d braided composites varies with loading mode and temperature. Out-of-plane compression shows multiple 45° shear failure, and compacted gradually. Longitudinal compression behaves as local outward expansion and multiple shear features along the braiding yarn/matrix interface. Transverse compression exhibits shear fracture at 45° in-plane direction. At high temperatures, the shear fracture feature still dominated the main failure. The matrix gets soft, cracks and comes plastic, and the interfacial adhesion of fiber/matrix is significantly reduced. Braided composites Elsevier Failure morphology Elsevier 3D seven-directional braiding Elsevier High-temperature properties Elsevier Yang, Ying oth Jiang, Lei oth Enthalten in Elsevier Davey, Benjamin ELSEVIER Versatile, but not focused, traffic offenders are more likely to be at fault for a fatal crash 2022 an international journal Amsterdam (DE-627)ELV007891687 volume:268 year:2021 day:15 month:07 pages:0 https://doi.org/10.1016/j.compstruct.2021.113934 Volltext GBV_USEFLAG_U GBV_ELV SYSFLAG_U 50.17 Sicherheitstechnik VZ 55.80 Verkehrswesen Transportwesen: Allgemeines VZ 44.80 Unfallmedizin Notfallmedizin VZ AR 268 2021 15 0715 0 |
allfieldsGer |
10.1016/j.compstruct.2021.113934 doi /cbs_pica/cbs_olc/import_discovery/elsevier/einzuspielen/GBV00000000001425.pica (DE-627)ELV054069211 (ELSEVIER)S0263-8223(21)00394-9 DE-627 ger DE-627 rakwb eng 690 VZ 50.17 bkl 55.80 bkl 44.80 bkl Li, Dian-sen verfasserin aut Experimental study on the fabrication, high-temperature properties and failure analysis of 3D seven-directional braided composites under compression 2021transfer abstract nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure mechanism is evaluated using Macro-fracture and SEM micrographs. The results show that as temperature increases, the stress vs. strain curves decrease monotonically and present nonlinearity feature. Meanwhile, the out-of-plane compression properties among three loading direction modes is the best, following by longitudinal, and transverse is the worst. 3D7d structure significantly improves the out-of-plane properties compared to 3D6d, 3D5d and 3D4d structure. Meanwhile, it also makes the transverse properties higher than those of 3D5d and 3D4d structure. Moreover, failure mechanism of 3D7d braided composites varies with loading mode and temperature. Out-of-plane compression shows multiple 45° shear failure, and compacted gradually. Longitudinal compression behaves as local outward expansion and multiple shear features along the braiding yarn/matrix interface. Transverse compression exhibits shear fracture at 45° in-plane direction. At high temperatures, the shear fracture feature still dominated the main failure. The matrix gets soft, cracks and comes plastic, and the interfacial adhesion of fiber/matrix is significantly reduced. Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure mechanism is evaluated using Macro-fracture and SEM micrographs. The results show that as temperature increases, the stress vs. strain curves decrease monotonically and present nonlinearity feature. Meanwhile, the out-of-plane compression properties among three loading direction modes is the best, following by longitudinal, and transverse is the worst. 3D7d structure significantly improves the out-of-plane properties compared to 3D6d, 3D5d and 3D4d structure. Meanwhile, it also makes the transverse properties higher than those of 3D5d and 3D4d structure. Moreover, failure mechanism of 3D7d braided composites varies with loading mode and temperature. Out-of-plane compression shows multiple 45° shear failure, and compacted gradually. Longitudinal compression behaves as local outward expansion and multiple shear features along the braiding yarn/matrix interface. Transverse compression exhibits shear fracture at 45° in-plane direction. At high temperatures, the shear fracture feature still dominated the main failure. The matrix gets soft, cracks and comes plastic, and the interfacial adhesion of fiber/matrix is significantly reduced. Braided composites Elsevier Failure morphology Elsevier 3D seven-directional braiding Elsevier High-temperature properties Elsevier Yang, Ying oth Jiang, Lei oth Enthalten in Elsevier Davey, Benjamin ELSEVIER Versatile, but not focused, traffic offenders are more likely to be at fault for a fatal crash 2022 an international journal Amsterdam (DE-627)ELV007891687 volume:268 year:2021 day:15 month:07 pages:0 https://doi.org/10.1016/j.compstruct.2021.113934 Volltext GBV_USEFLAG_U GBV_ELV SYSFLAG_U 50.17 Sicherheitstechnik VZ 55.80 Verkehrswesen Transportwesen: Allgemeines VZ 44.80 Unfallmedizin Notfallmedizin VZ AR 268 2021 15 0715 0 |
allfieldsSound |
10.1016/j.compstruct.2021.113934 doi /cbs_pica/cbs_olc/import_discovery/elsevier/einzuspielen/GBV00000000001425.pica (DE-627)ELV054069211 (ELSEVIER)S0263-8223(21)00394-9 DE-627 ger DE-627 rakwb eng 690 VZ 50.17 bkl 55.80 bkl 44.80 bkl Li, Dian-sen verfasserin aut Experimental study on the fabrication, high-temperature properties and failure analysis of 3D seven-directional braided composites under compression 2021transfer abstract nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure mechanism is evaluated using Macro-fracture and SEM micrographs. The results show that as temperature increases, the stress vs. strain curves decrease monotonically and present nonlinearity feature. Meanwhile, the out-of-plane compression properties among three loading direction modes is the best, following by longitudinal, and transverse is the worst. 3D7d structure significantly improves the out-of-plane properties compared to 3D6d, 3D5d and 3D4d structure. Meanwhile, it also makes the transverse properties higher than those of 3D5d and 3D4d structure. Moreover, failure mechanism of 3D7d braided composites varies with loading mode and temperature. Out-of-plane compression shows multiple 45° shear failure, and compacted gradually. Longitudinal compression behaves as local outward expansion and multiple shear features along the braiding yarn/matrix interface. Transverse compression exhibits shear fracture at 45° in-plane direction. At high temperatures, the shear fracture feature still dominated the main failure. The matrix gets soft, cracks and comes plastic, and the interfacial adhesion of fiber/matrix is significantly reduced. Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure mechanism is evaluated using Macro-fracture and SEM micrographs. The results show that as temperature increases, the stress vs. strain curves decrease monotonically and present nonlinearity feature. Meanwhile, the out-of-plane compression properties among three loading direction modes is the best, following by longitudinal, and transverse is the worst. 3D7d structure significantly improves the out-of-plane properties compared to 3D6d, 3D5d and 3D4d structure. Meanwhile, it also makes the transverse properties higher than those of 3D5d and 3D4d structure. Moreover, failure mechanism of 3D7d braided composites varies with loading mode and temperature. Out-of-plane compression shows multiple 45° shear failure, and compacted gradually. Longitudinal compression behaves as local outward expansion and multiple shear features along the braiding yarn/matrix interface. Transverse compression exhibits shear fracture at 45° in-plane direction. At high temperatures, the shear fracture feature still dominated the main failure. The matrix gets soft, cracks and comes plastic, and the interfacial adhesion of fiber/matrix is significantly reduced. Braided composites Elsevier Failure morphology Elsevier 3D seven-directional braiding Elsevier High-temperature properties Elsevier Yang, Ying oth Jiang, Lei oth Enthalten in Elsevier Davey, Benjamin ELSEVIER Versatile, but not focused, traffic offenders are more likely to be at fault for a fatal crash 2022 an international journal Amsterdam (DE-627)ELV007891687 volume:268 year:2021 day:15 month:07 pages:0 https://doi.org/10.1016/j.compstruct.2021.113934 Volltext GBV_USEFLAG_U GBV_ELV SYSFLAG_U 50.17 Sicherheitstechnik VZ 55.80 Verkehrswesen Transportwesen: Allgemeines VZ 44.80 Unfallmedizin Notfallmedizin VZ AR 268 2021 15 0715 0 |
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experimental study on the fabrication, high-temperature properties and failure analysis of 3d seven-directional braided composites under compression |
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Experimental study on the fabrication, high-temperature properties and failure analysis of 3D seven-directional braided composites under compression |
abstract |
Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure mechanism is evaluated using Macro-fracture and SEM micrographs. The results show that as temperature increases, the stress vs. strain curves decrease monotonically and present nonlinearity feature. Meanwhile, the out-of-plane compression properties among three loading direction modes is the best, following by longitudinal, and transverse is the worst. 3D7d structure significantly improves the out-of-plane properties compared to 3D6d, 3D5d and 3D4d structure. Meanwhile, it also makes the transverse properties higher than those of 3D5d and 3D4d structure. Moreover, failure mechanism of 3D7d braided composites varies with loading mode and temperature. Out-of-plane compression shows multiple 45° shear failure, and compacted gradually. Longitudinal compression behaves as local outward expansion and multiple shear features along the braiding yarn/matrix interface. Transverse compression exhibits shear fracture at 45° in-plane direction. At high temperatures, the shear fracture feature still dominated the main failure. The matrix gets soft, cracks and comes plastic, and the interfacial adhesion of fiber/matrix is significantly reduced. |
abstractGer |
Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure mechanism is evaluated using Macro-fracture and SEM micrographs. The results show that as temperature increases, the stress vs. strain curves decrease monotonically and present nonlinearity feature. Meanwhile, the out-of-plane compression properties among three loading direction modes is the best, following by longitudinal, and transverse is the worst. 3D7d structure significantly improves the out-of-plane properties compared to 3D6d, 3D5d and 3D4d structure. Meanwhile, it also makes the transverse properties higher than those of 3D5d and 3D4d structure. Moreover, failure mechanism of 3D7d braided composites varies with loading mode and temperature. Out-of-plane compression shows multiple 45° shear failure, and compacted gradually. Longitudinal compression behaves as local outward expansion and multiple shear features along the braiding yarn/matrix interface. Transverse compression exhibits shear fracture at 45° in-plane direction. At high temperatures, the shear fracture feature still dominated the main failure. The matrix gets soft, cracks and comes plastic, and the interfacial adhesion of fiber/matrix is significantly reduced. |
abstract_unstemmed |
Three-dimensional seven-directional (3D7d) braided composites had potential application in aerospace field and they were successfully fabricated. The compression mechanical properties of composites are thoroughly studied based on different load modes and high temperature influence. Then, the failure mechanism is evaluated using Macro-fracture and SEM micrographs. The results show that as temperature increases, the stress vs. strain curves decrease monotonically and present nonlinearity feature. Meanwhile, the out-of-plane compression properties among three loading direction modes is the best, following by longitudinal, and transverse is the worst. 3D7d structure significantly improves the out-of-plane properties compared to 3D6d, 3D5d and 3D4d structure. Meanwhile, it also makes the transverse properties higher than those of 3D5d and 3D4d structure. Moreover, failure mechanism of 3D7d braided composites varies with loading mode and temperature. Out-of-plane compression shows multiple 45° shear failure, and compacted gradually. Longitudinal compression behaves as local outward expansion and multiple shear features along the braiding yarn/matrix interface. Transverse compression exhibits shear fracture at 45° in-plane direction. At high temperatures, the shear fracture feature still dominated the main failure. The matrix gets soft, cracks and comes plastic, and the interfacial adhesion of fiber/matrix is significantly reduced. |
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Experimental study on the fabrication, high-temperature properties and failure analysis of 3D seven-directional braided composites under compression |
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