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  • The goal of this study is to determine and verify stiffness properties of a novel type of 3D composite. Technology parameters were taken in modelling in consideration, i.e. angle of winding of unidirectional core, thickness of winding and material variation etc. Samples of 3D composite were measured to verify assumed approximations. A measurement was based on tensile, compressive and bending tests to determine elastics normal and shear modules. Main goal of FEM model is to simulate stiffness properties and shear properties respectively.
  • The goal of this study is to determine and verify stiffness properties of a novel type of 3D composite. Technology parameters were taken in modelling in consideration, i.e. angle of winding of unidirectional core, thickness of winding and material variation etc. Samples of 3D composite were measured to verify assumed approximations. A measurement was based on tensile, compressive and bending tests to determine elastics normal and shear modules. Main goal of FEM model is to simulate stiffness properties and shear properties respectively. (en)
Title
  • Stiffness properties of 3D composite structure
  • Stiffness properties of 3D composite structure (en)
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  • Stiffness properties of 3D composite structure
  • Stiffness properties of 3D composite structure (en)
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  • RIV/68407700:21220/11:00184983!RIV12-MSM-21220___
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  • P(GA101/08/0299), P(GD101/08/H068), S
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  • RIV/68407700:21220/11:00184983
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  • l. three-dimensional composite structure; pitch based carbon fibre; FEM; optimization of laminates (en)
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  • [21A7401CDC37]
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  • Had, Jiří
  • Kulíšek, Viktor
  • Růžička, Milan
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  • 21220
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