Mechanical response of filament wound composite rings under tension and compression
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作者:
Eggers, Frederico
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Univ Fed Rio Grande do Sul, PPGE3M, Av Bento Goncalves 9500, BR-91501970 Porto Alegre, RS, BrazilUniv Fed Rio Grande do Sul, PPGE3M, Av Bento Goncalves 9500, BR-91501970 Porto Alegre, RS, Brazil
Eggers, Frederico
[1
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Almeida, Jose Humberto S., Jr.
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机构:
Leibniz Inst Polymer Res Dresden, Mech & Composite Mat Dept, Hohe Str 6, D-01069 Dresden, GermanyUniv Fed Rio Grande do Sul, PPGE3M, Av Bento Goncalves 9500, BR-91501970 Porto Alegre, RS, Brazil
Almeida, Jose Humberto S., Jr.
[2
]
Azevedo, Cristiano B.
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Univ Fed Rio Grande do Sul, PPGE3M, Av Bento Goncalves 9500, BR-91501970 Porto Alegre, RS, BrazilUniv Fed Rio Grande do Sul, PPGE3M, Av Bento Goncalves 9500, BR-91501970 Porto Alegre, RS, Brazil
Azevedo, Cristiano B.
[1
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Amico, Sandro C.
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Univ Fed Rio Grande do Sul, PPGE3M, Av Bento Goncalves 9500, BR-91501970 Porto Alegre, RS, BrazilUniv Fed Rio Grande do Sul, PPGE3M, Av Bento Goncalves 9500, BR-91501970 Porto Alegre, RS, Brazil
Amico, Sandro C.
[1
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机构:
[1] Univ Fed Rio Grande do Sul, PPGE3M, Av Bento Goncalves 9500, BR-91501970 Porto Alegre, RS, Brazil
[2] Leibniz Inst Polymer Res Dresden, Mech & Composite Mat Dept, Hohe Str 6, D-01069 Dresden, Germany
This study aims at evaluating the influence of the winding angle, stacking sequence and diameter-to-thickness ratio on the mechanical response of composite rings subjected to radial compression, axial compression and hoop tensile loadings. The rings were obtained from filament wound tubes. The rings were found highly dependent on the winding angle, i.e. the specimens with fibers at +/- 90 degrees presented the best radial compressive characteristics, whereas those wound at +/- 60 degrees performed best under axial compression, and apparent hoop tensile strength determined via split disk testing was higher for rings wound at +/- 90 degrees. All rings were dependent on the diameter-to-thickness ratio. Failure was studied through micrographs of post-mortem specimens. The dominant failure modes for radial compression, axial compression and hoop tensile loadings were, respectively, delamination, delamination and minor off-axis cracks, and fiber/matrix debonding and fiber breakage.
机构:
Department of Naval Architecture Engineering, Naval University of Engineering, WuhanDepartment of Naval Architecture Engineering, Naval University of Engineering, Wuhan
Zhou X.
Mei Z.
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Department of Naval Architecture Engineering, Naval University of Engineering, WuhanDepartment of Naval Architecture Engineering, Naval University of Engineering, Wuhan
Mei Z.
Wu F.
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Department of Naval Architecture Engineering, Naval University of Engineering, WuhanDepartment of Naval Architecture Engineering, Naval University of Engineering, Wuhan
机构:
Budapest Univ Technol & Econ, Dept Machine & Prod Design, 1-3 Mu Egyet Quai, H-1111 Budapest, HungaryBudapest Univ Technol & Econ, Dept Machine & Prod Design, 1-3 Mu Egyet Quai, H-1111 Budapest, Hungary
Szabo, Gyula
Varadi, Karoly
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Budapest Univ Technol & Econ, Dept Machine & Prod Design, 1-3 Mu Egyet Quai, H-1111 Budapest, HungaryBudapest Univ Technol & Econ, Dept Machine & Prod Design, 1-3 Mu Egyet Quai, H-1111 Budapest, Hungary