Experimental and numerical analysis of heat convection in cylindrical composite structures with internal defects

The present article discusses the influence of delamination and external loads on the heat transfer in flat and curved laminated panels. Three cases are considered in details: (1) the unloaded structure (length is a constant), (2) the static loading, and (3) the fatigue loading. Here, the comparison...

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Main Authors: Aleksander Muc, Małgorzata Chwał, Adam Stawiarski
Format: Article
Language:English
Published: SAGE Publishing 2019-10-01
Series:Advanced Composites Letters
Online Access:https://doi.org/10.1177/0963693519879699
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author Aleksander Muc
Małgorzata Chwał
Adam Stawiarski
author_facet Aleksander Muc
Małgorzata Chwał
Adam Stawiarski
author_sort Aleksander Muc
collection DOAJ
description The present article discusses the influence of delamination and external loads on the heat transfer in flat and curved laminated panels. Three cases are considered in details: (1) the unloaded structure (length is a constant), (2) the static loading, and (3) the fatigue loading. Here, the comparison between experimental and numerical (finite element method) results is presented. The numerical model allows us to adopt implementations of various boundary conditions as well as the size of delamination. The influence of the shallowness parameter and the thermal resistance is demonstrated. The experimental detection of temperature contours during the cooling process has been conducted at different points in the area surrounding the delamination.
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spelling doaj.art-0e61d1f1ca644d9abfdf69e3912474b62022-12-21T23:36:29ZengSAGE PublishingAdvanced Composites Letters0963-69352019-10-012810.1177/0963693519879699Experimental and numerical analysis of heat convection in cylindrical composite structures with internal defectsAleksander MucMałgorzata ChwałAdam StawiarskiThe present article discusses the influence of delamination and external loads on the heat transfer in flat and curved laminated panels. Three cases are considered in details: (1) the unloaded structure (length is a constant), (2) the static loading, and (3) the fatigue loading. Here, the comparison between experimental and numerical (finite element method) results is presented. The numerical model allows us to adopt implementations of various boundary conditions as well as the size of delamination. The influence of the shallowness parameter and the thermal resistance is demonstrated. The experimental detection of temperature contours during the cooling process has been conducted at different points in the area surrounding the delamination.https://doi.org/10.1177/0963693519879699
spellingShingle Aleksander Muc
Małgorzata Chwał
Adam Stawiarski
Experimental and numerical analysis of heat convection in cylindrical composite structures with internal defects
Advanced Composites Letters
title Experimental and numerical analysis of heat convection in cylindrical composite structures with internal defects
title_full Experimental and numerical analysis of heat convection in cylindrical composite structures with internal defects
title_fullStr Experimental and numerical analysis of heat convection in cylindrical composite structures with internal defects
title_full_unstemmed Experimental and numerical analysis of heat convection in cylindrical composite structures with internal defects
title_short Experimental and numerical analysis of heat convection in cylindrical composite structures with internal defects
title_sort experimental and numerical analysis of heat convection in cylindrical composite structures with internal defects
url https://doi.org/10.1177/0963693519879699
work_keys_str_mv AT aleksandermuc experimentalandnumericalanalysisofheatconvectionincylindricalcompositestructureswithinternaldefects
AT małgorzatachwał experimentalandnumericalanalysisofheatconvectionincylindricalcompositestructureswithinternaldefects
AT adamstawiarski experimentalandnumericalanalysisofheatconvectionincylindricalcompositestructureswithinternaldefects