Related Books

Biaxial Characterization and Mean-field Based Damage Modeling of Sheet Molding Compound Composites
Language: en
Pages: 194
Authors: Schemmann, Malte
Categories: Automobile industry and trade
Type: BOOK - Published: 2018-11-09 - Publisher: KIT Scientific Publishing

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The focus of this work lies on the microstructure-based modeling and characterization of a discontinuous fiber-reinforced thermoset in the form of sheet molding
Biaxial Characterization and Mean-field Based Damage Modeling of Sheet Molding Compound Composites
Language: en
Pages: 186
Authors: Malte Schemmann
Categories: Technology & Engineering
Type: BOOK - Published: 2020-10-09 - Publisher:

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The focus of this work lies on the microstructure-based modeling and characterization of a discontinuous fiber-reinforced thermoset in the form of sheet molding
Thermomechanical Mean-Field Modeling and Experimental Characterization of Long Fiber-Reinforced Sheet Molding Compound Composites
Language: en
Pages: 204
Authors: Kehrer, Maria Loredana
Categories: Technology & Engineering
Type: BOOK - Published: 2019-06-13 - Publisher: KIT Scientific Publishing

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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
Thermomechanical Modeling and Experimental Characterization of Sheet Molding Compound Composites
Language: en
Pages: 250
Authors: Lang, Juliane
Categories:
Type: BOOK - Published: 2023-06-28 - Publisher: KIT Scientific Publishing

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The aim of this work is to model and experimentally characterize the anisotropic material behavior of SMC composites on the macroscale with consideration of the
Fiber Orientation Tensors and Mean Field Homogenization: Application to Sheet Molding Compound
Language: en
Pages: 252
Authors: Bauer, Julian Karl
Categories: Technology & Engineering
Type: BOOK - Published: 2023-02-27 - Publisher: KIT Scientific Publishing

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Effective mechanical properties of fiber-reinforced composites strongly depend on the microstructure, including the fibers' orientation. Studying this dependenc