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  • Thermomechanical Mean-Field Modeling and Experimental Characterization of Long Fiber-Reinforced Sheet Molding Compound Composites

    Maria Loredana Kehrer

    Band 15 von Schriftenreihe Kontinuumsmechanik im Maschinenbau
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    A discontinuous fiber-reinforced thermoset material produced by the Sheet Molding Compound process is investigated. Due to the process-related fiber orientation distribution, a composite with an anisotropic microstructure is created which crucially affects the mechanical properties. The central objectives are the modeling of the thermoelastic behavior of the composite accounting for the underlying microstructure, and the experimental characterization of the pure resin and the composite material.

    Umfang: IX, 178 S.

    Preis: €43.00 | £40.00 | $76.00

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    Kehrer, M. 2019. Thermomechanical Mean-Field Modeling and Experimental Characterization of Long Fiber-Reinforced Sheet Molding Compound Composites. Karlsruhe: KIT Scientific Publishing. DOI: https://doi.org/10.5445/KSP/1000093328
    Kehrer, M.L., 2019. Thermomechanical Mean-Field Modeling and Experimental Characterization of Long Fiber-Reinforced Sheet Molding Compound Composites. Karlsruhe: KIT Scientific Publishing. DOI: https://doi.org/10.5445/KSP/1000093328
    Kehrer, M L. Thermomechanical Mean-field Modeling and Experimental Characterization of Long Fiber-reinforced Sheet Molding Compound Composites. KIT Scientific Publishing, 2019. DOI: https://doi.org/10.5445/KSP/1000093328
    Kehrer, M. L. (2019). Thermomechanical Mean-Field Modeling and Experimental Characterization of Long Fiber-Reinforced Sheet Molding Compound Composites. Karlsruhe: KIT Scientific Publishing. DOI: https://doi.org/10.5445/KSP/1000093328
    Kehrer, Maria Loredana. 2019. Thermomechanical Mean-field Modeling and Experimental Characterization of Long Fiber-reinforced Sheet Molding Compound Composites. Karlsruhe: KIT Scientific Publishing. DOI: https://doi.org/10.5445/KSP/1000093328




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    Veröffentlicht am 13. Juni 2019

    Sprache

    Englisch

    Seitenanzahl:

    206

    ISBN
    Paperback 978-3-7315-0924-0

    DOI
    https://doi.org/10.5445/KSP/1000093328