Phase-field modeling of multi-domain evolution in ferromagnetic shape memory alloys and of polycrystalline thin film growth

The phase-field method is a powerful tool in computer-aided materials science as it allows for the analysis of the time-spatial evolution of microstructures on the mesoscale. A multi-phase-field model is adopted to run numerical simulations in two different areas of scientific interest: Polycrystall...

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Autor principal: Mennerich, Christian
Format: Online
Idioma:anglès
Publicat: KIT Scientific Publishing 2021
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Accés en línia:35665
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author Mennerich, Christian
author_browse Mennerich, Christian
author_facet Mennerich, Christian
author_sort Mennerich, Christian
collection Directory of Open Access Books
description The phase-field method is a powerful tool in computer-aided materials science as it allows for the analysis of the time-spatial evolution of microstructures on the mesoscale. A multi-phase-field model is adopted to run numerical simulations in two different areas of scientific interest: Polycrystalline thin films growth and the ferromagnetic shape memory effect. FFT-techniques, norm conservative integration and RVE-methods are necessary to make the coupled problems numerically feasible.
format Online
id doab-20.500.12854ir-56141
institution Directory of Open Access Books
language eng
publishDate 2021
publishDateRange 2021
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publisherStr KIT Scientific Publishing
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spelling doab-20.500.12854ir-561412024-04-09T23:16:37Z Phase-field modeling of multi-domain evolution in ferromagnetic shape memory alloys and of polycrystalline thin film growth Mennerich, Christian T1-995 magnetic shape memory effectphase-field modelingthin film growthcomputational materials science and engineering thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues The phase-field method is a powerful tool in computer-aided materials science as it allows for the analysis of the time-spatial evolution of microstructures on the mesoscale. A multi-phase-field model is adopted to run numerical simulations in two different areas of scientific interest: Polycrystalline thin films growth and the ferromagnetic shape memory effect. FFT-techniques, norm conservative integration and RVE-methods are necessary to make the coupled problems numerically feasible. 2021-02-11T22:46:48Z 2021-02-11T22:46:48Z 2019-07-30 20:02:02 2013 book 35665 21929963 9783731500094 https://directory.doabooks.org/handle/20.500.12854/56141 eng Schriftenreihe des Instituts für Angewandte Materialien, Karlsruher Institut für Technologie image/jpeg Attribution-NonCommercial-NoDerivatives 4.0 International https://www.ksp.kit.edu/9783731500094 KIT Scientific Publishing 10.5445/KSP/1000034246 10.5445/KSP/1000034246 68fffc18-8f7b-44fa-ac7e-0b7d7d979bd2 9783731500094 XVIII, 254 p. open access
spellingShingle T1-995
magnetic shape memory effectphase-field modelingthin film growthcomputational materials science and engineering
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues
Mennerich, Christian
Phase-field modeling of multi-domain evolution in ferromagnetic shape memory alloys and of polycrystalline thin film growth
title Phase-field modeling of multi-domain evolution in ferromagnetic shape memory alloys and of polycrystalline thin film growth
title_full Phase-field modeling of multi-domain evolution in ferromagnetic shape memory alloys and of polycrystalline thin film growth
title_fullStr Phase-field modeling of multi-domain evolution in ferromagnetic shape memory alloys and of polycrystalline thin film growth
title_full_unstemmed Phase-field modeling of multi-domain evolution in ferromagnetic shape memory alloys and of polycrystalline thin film growth
title_short Phase-field modeling of multi-domain evolution in ferromagnetic shape memory alloys and of polycrystalline thin film growth
title_sort phase field modeling of multi domain evolution in ferromagnetic shape memory alloys and of polycrystalline thin film growth
topic T1-995
magnetic shape memory effectphase-field modelingthin film growthcomputational materials science and engineering
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues
topic_facet T1-995
magnetic shape memory effectphase-field modelingthin film growthcomputational materials science and engineering
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues
url 35665
work_keys_str_mv AT mennerichchristian phasefieldmodelingofmultidomainevolutioninferromagneticshapememoryalloysandofpolycrystallinethinfilmgrowth