About: Fatigue crack growth and delamination in fiber metal laminate (GLARE) during loading with positive mean stress     Goto   Sponge   NotDistinct   Permalink

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  • The aim of the paper is to present the results of a study on the damage of fiber metal laminate (GLARE) subjected to the low cycle fatigue loading with positive mean stress. The fatigue crack initiation and growth was observed on the surface of notched specimens and then the individual layers of fatigued specimens were removed by chemical etching and polishing to obtain data about cracks length and delamination shape and area. Mechanism of initiation and crack growth in this type of materials differs from homogeneous monolithic materials. The fatigue life in term of number of cycles to crack initiation depending on amplitude of local plastic deformation and local stress in the notch root was evaluated.
  • The aim of the paper is to present the results of a study on the damage of fiber metal laminate (GLARE) subjected to the low cycle fatigue loading with positive mean stress. The fatigue crack initiation and growth was observed on the surface of notched specimens and then the individual layers of fatigued specimens were removed by chemical etching and polishing to obtain data about cracks length and delamination shape and area. Mechanism of initiation and crack growth in this type of materials differs from homogeneous monolithic materials. The fatigue life in term of number of cycles to crack initiation depending on amplitude of local plastic deformation and local stress in the notch root was evaluated. (en)
Title
  • Fatigue crack growth and delamination in fiber metal laminate (GLARE) during loading with positive mean stress
  • Fatigue crack growth and delamination in fiber metal laminate (GLARE) during loading with positive mean stress (en)
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  • Fatigue crack growth and delamination in fiber metal laminate (GLARE) during loading with positive mean stress
  • Fatigue crack growth and delamination in fiber metal laminate (GLARE) during loading with positive mean stress (en)
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  • RIV/68081723:_____/12:00377731!RIV13-GA0-68081723
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  • I, P(GA106/09/1954)
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  • 136236
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  • RIV/68081723:_____/12:00377731
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  • fatigue; laminate; crack initiation; crack growth; delamination (en)
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  • [9F3527D601B7]
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  • Svratka
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  • Praha
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  • Proceedings of Engineering Mechanics 2012
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  • Chlupová, Alice
  • Kozák, Vladislav
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number of pages
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  • Institute of Theoretical and Applied Mechanics AS CR, v.v.i
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  • 978-80-86246-40-6
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