Process Simulation Of Wet Compression Moulding For Continuous Fibre Reinforced Polymers


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Process simulation of wet compression moulding for continuous fibre-reinforced polymers


Process simulation of wet compression moulding for continuous fibre-reinforced polymers

Author: Poppe, Christian Timo

language: en

Publisher: KIT Scientific Publishing

Release Date: 2022-07-18


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Interdisciplinary development approaches for system-efficient lightweight design unite a comprehensive understanding of materials, processes and methods. This applies particularly to continuous fibre-reinforced plastics (CoFRPs), which offer high weight-specific material properties and enable load path-optimised designs. This thesis is dedicated to understanding and modelling Wet Compression Moulding (WCM) to facilitate large-volume production of CoFRP structural components.

Fiber-dependent injection molding simulation of discontinuous reinforced polymers


Fiber-dependent injection molding simulation of discontinuous reinforced polymers

Author: Wittemann, Florian

language: en

Publisher: KIT Scientific Publishing

Release Date: 2022-11-18


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This work presents novel simulation techniques for injection molding of fiber reinforced polymers. These include approaches for anisotropic flow modeling, hydrodynamic forces from fluid on fibers, contact forces between fibers, a novel fiber breakage modeling approach and anisotropic warpage analysis. Due to the coupling of fiber breakage and anisotropic flow modeling, the fiber breakage directly influences the modeled cavity pressure, which is validated with experimental data.

Constrained-layer damping in hybrid fibre metal elastomer laminates and its tolerance to damage


Constrained-layer damping in hybrid fibre metal elastomer laminates and its tolerance to damage

Author: Jackstadt, Alexander

language: en

Publisher: KIT Scientific Publishing

Release Date: 2025-04-07


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This work presents experimental, analytical and numerical methods for predicting structural behaviour as well as damping capabilities of hybrid fibre metal elastomer laminates (FMELs), particularly for the assessment and optimisation of constrained-layer damping (CLD) with regard to its tolerance to damage.


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