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Ewald Fauster

Researcher at University of Leoben

Publications -  46
Citations -  378

Ewald Fauster is an academic researcher from University of Leoben. The author has contributed to research in topics: Transfer molding & Image processing. The author has an hindex of 8, co-authored 43 publications receiving 263 citations.

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Monitoring the production of FRP composites: A review of in-line sensing methods

TL;DR: In this paper, the authors present a review of the latest progress in the field of in-line composites monitoring with a focus on Fiber Reinforced Polymeric-based (FRP) composite structures.
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In-plane permeability characterization of engineering textiles based on radial flow experiments: A benchmark exercise

TL;DR: In this paper, the results of a third benchmark exercise using in-plane permeability measurement, based on systems applying the radial unsaturated injection method, were presented, where 19 participants using 20 systems characterized a non-crimp and a woven fabric at three different fiber volume contents, using a commercially available silicone oil as impregnating fluid.
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Flow front advancement during composite processing: predictions from numerical filling simulation tools in comparison with real‐world experiments

TL;DR: In this article, a comparison of two different software packages, namely PAM-RTM and OpenFOAM, is performed for modeling the flow through the reinforcing structure for visualization of the flow behavior.
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Out-of-plane permeability measurement for reinforcement textiles: A benchmark exercise

A.X.H. Yong, +54 more
TL;DR: In this article, the out-of-plane permeability of two glass fibre fabrics was measured by 26 institutions using silicone oil as a test fluid, participants were free to select the test procedure, specimen dimensions and data analysis method, provided that testing was carried out at three target fibre volume fractions, 46, 50% and 54%.
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Experimental characterisation of textile compaction response: A benchmark exercise

TL;DR: In this article, the results of an international benchmark exercise on the measurement of fiber bed compaction behavior were reported and the aim was to identify aspects of the test method critical to obtain reliable results and to arrive at a recommended test procedure for fiber bed measurements.