9783731509981.pdf

In this work, initially, the requirements on a simulation model of the non-isothermal stamp forming process of unidirectional fiber-reinforced, and thermoplastic tape laminates are investigated experimentally. On this basis, different isothermal as well as a fully coupled thermomechanical simulation...

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Έκδοση: KIT Scientific Publishing 2021
id oapen-20.500.12657-52048
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spelling oapen-20.500.12657-520482021-12-17T02:44:59Z Simulation of the thermoforming process of UD fiber-reinforced thermoplastic tape laminates Dörr, Dominik Prozesssimulation Umformung UD tape Finite Elemente Analyse thermoplastisch process simulation forming Finite Element Analysis thermoplastic bic Book Industry Communication::T Technology, engineering, agriculture::TG Mechanical engineering & materials In this work, initially, the requirements on a simulation model of the non-isothermal stamp forming process of unidirectional fiber-reinforced, and thermoplastic tape laminates are investigated experimentally. On this basis, different isothermal as well as a fully coupled thermomechanical simulation model under consideration of the crystallization kinetics are developed. For validation, a complex shaped geometry is simulated and compared to experimental forming results. 2021-12-16T10:19:28Z 2021-12-16T10:19:28Z 2021 book ONIX_20211216_9783731509981_4 1869-6058 9783731509981 https://library.oapen.org/handle/20.500.12657/52048 eng Karlsruher Schriftenreihe Fahrzeugsystemtechnik application/pdf n/a 9783731509981.pdf KIT Scientific Publishing KIT Scientific Publishing 10.5445/KSP/1000099858 10.5445/KSP/1000099858 44e29711-8d53-496b-85cc-3d10c9469be9 9783731509981 KIT Scientific Publishing 87 336 Karlsruhe open access
institution OAPEN
collection DSpace
language English
description In this work, initially, the requirements on a simulation model of the non-isothermal stamp forming process of unidirectional fiber-reinforced, and thermoplastic tape laminates are investigated experimentally. On this basis, different isothermal as well as a fully coupled thermomechanical simulation model under consideration of the crystallization kinetics are developed. For validation, a complex shaped geometry is simulated and compared to experimental forming results.
title 9783731509981.pdf
spellingShingle 9783731509981.pdf
title_short 9783731509981.pdf
title_full 9783731509981.pdf
title_fullStr 9783731509981.pdf
title_full_unstemmed 9783731509981.pdf
title_sort 9783731509981.pdf
publisher KIT Scientific Publishing
publishDate 2021
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