Numerical modeling of automated tape placement process of unidirectional thermoplastic

Within the framework of the present work, studies are being carried out to select the tooling material for the automated placement of the thermoplastic prepreg. A mathematical model of the heating of the tooling and a thermoplastic prepreg tape with an automated placement of the prepreg on the mandr...

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Main Authors: Anoshkin Aleksandr N., Pisarev Pavel V., Kirova Yulia S.
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201822401080
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spelling doaj-64a29ecd7f504c768df1bd655507b09b2021-03-02T10:16:33ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012240108010.1051/matecconf/201822401080matecconf_icmtmte2018_01080Numerical modeling of automated tape placement process of unidirectional thermoplasticAnoshkin Aleksandr N.0Pisarev Pavel V.1Kirova Yulia S.2Perm National Reserch Polytechnical UniversityPerm National Reserch Polytechnical UniversityPerm National Reserch Polytechnical UniversityWithin the framework of the present work, studies are being carried out to select the tooling material for the automated placement of the thermoplastic prepreg. A mathematical model of the heating of the tooling and a thermoplastic prepreg tape with an automated placement of the prepreg on the mandrel is developed. In the framework of numerical experiments, two rigs made of steel and carbon fiber were considered. Based on the results of numerical experiments, the temperature field distributions in the laid out part and in the tooling were obtained. The analysis of the obtained results revealed that when using metal tools, a considerable heat removal from the heated layers of the thermoplastic is observed, which can significantly influence the crystallization process of the thermoplastic. Also on the carbon-fiber tooling, the laser warming spot is more localized than in the metallic one. On the basis of the data obtained, the linear deformation of the rigging was calculated, it was found that the maximum deformations in the steel tooling are three times higher than the maximum deformations in the carbon fiber. It is determined that when using metal equipment, a significant heat removal from the heated layers of the thermoplastic is observed.https://doi.org/10.1051/matecconf/201822401080
collection DOAJ
language English
format Article
sources DOAJ
author Anoshkin Aleksandr N.
Pisarev Pavel V.
Kirova Yulia S.
spellingShingle Anoshkin Aleksandr N.
Pisarev Pavel V.
Kirova Yulia S.
Numerical modeling of automated tape placement process of unidirectional thermoplastic
MATEC Web of Conferences
author_facet Anoshkin Aleksandr N.
Pisarev Pavel V.
Kirova Yulia S.
author_sort Anoshkin Aleksandr N.
title Numerical modeling of automated tape placement process of unidirectional thermoplastic
title_short Numerical modeling of automated tape placement process of unidirectional thermoplastic
title_full Numerical modeling of automated tape placement process of unidirectional thermoplastic
title_fullStr Numerical modeling of automated tape placement process of unidirectional thermoplastic
title_full_unstemmed Numerical modeling of automated tape placement process of unidirectional thermoplastic
title_sort numerical modeling of automated tape placement process of unidirectional thermoplastic
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Within the framework of the present work, studies are being carried out to select the tooling material for the automated placement of the thermoplastic prepreg. A mathematical model of the heating of the tooling and a thermoplastic prepreg tape with an automated placement of the prepreg on the mandrel is developed. In the framework of numerical experiments, two rigs made of steel and carbon fiber were considered. Based on the results of numerical experiments, the temperature field distributions in the laid out part and in the tooling were obtained. The analysis of the obtained results revealed that when using metal tools, a considerable heat removal from the heated layers of the thermoplastic is observed, which can significantly influence the crystallization process of the thermoplastic. Also on the carbon-fiber tooling, the laser warming spot is more localized than in the metallic one. On the basis of the data obtained, the linear deformation of the rigging was calculated, it was found that the maximum deformations in the steel tooling are three times higher than the maximum deformations in the carbon fiber. It is determined that when using metal equipment, a significant heat removal from the heated layers of the thermoplastic is observed.
url https://doi.org/10.1051/matecconf/201822401080
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