том 2022 страницы 1-15

Injection Molding Simulation of Polyoxymethylene Using Crystallization Kinetics Data and Comparison with the Experimental Process

Theresia Schrank 1
Michael Berer 1
Bernd Haar 1
Bruno Ramôa 1, 2
Thomas Lucyshyn 3
Michael Feuchter 3
G.G. Pinter 3
Vito Speranza 4
1
 
Polymer Competence Center Leoben GmbH, Roseggerstrasse 12, Leoben 8700, Austria
3
 
Department of Polymer Engineering and Science, Montanuniversitaet Leoben, Otto-Gloeckl Strasse 2, Leoben 8700, Austria
Тип публикацииJournal Article
Дата публикации2022-03-23
scimago Q3
БС2
SJR0.314
CiteScore
Impact factor
ISSN25737619
Physical and Theoretical Chemistry
Materials Science (miscellaneous)
Polymers and Plastics
Mechanics of Materials
Краткое описание

It is well known that the processing conditions in polymer processing have a high impact on the resulting material morphology and consequently the component’s mechanical behavior. However, especially for semicrystalline polymers, the tools available for predicting the final morphology of injection molding parts still have significant limitations. In order to investigate the potential of injection molding simulation for the prediction of the morphology, POM homopolymer specimens were injection molded. The crystallization kinetics data were measured, and simulations in 3D and 2.5D with and without crystallization analysis were conducted in Autodesk Moldflow. The simulations are found to be good accordance with the experiments. Predicted spherulite size and crystalline orientation factor reveal a good qualitative correlation with optical micrographs. Also, the evolution of these parameters along the flow path is plausible. The simulation is found to be a powerful tool for morphology prediction in polymeric parts. Its applicability, however, is still limited to 2.5D models in Autodesk Moldflow, which, of course, is insufficient for complex, thick-walled 3-dimensional parts.

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Polymer Testing
1 публикация, 14.29%
Journal of Composites Science
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International Journal of Advanced Manufacturing Technology
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PAMM
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Polymers
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ACS Applied Polymer Materials
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ГОСТ |
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Schrank T. et al. Injection Molding Simulation of Polyoxymethylene Using Crystallization Kinetics Data and Comparison with the Experimental Process // Polymer Crystallization. 2022. Vol. 2022. pp. 1-15.
ГОСТ со всеми авторами (до 50) Скопировать
Schrank T., Berer M., Haar B., Ramôa B., Lucyshyn T., Feuchter M., Pinter G., Speranza V., Pantani R. Injection Molding Simulation of Polyoxymethylene Using Crystallization Kinetics Data and Comparison with the Experimental Process // Polymer Crystallization. 2022. Vol. 2022. pp. 1-15.
RIS |
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TY - JOUR
DO - 10.1155/2022/2387752
UR - https://doi.org/10.1155/2022/2387752
TI - Injection Molding Simulation of Polyoxymethylene Using Crystallization Kinetics Data and Comparison with the Experimental Process
T2 - Polymer Crystallization
AU - Schrank, Theresia
AU - Berer, Michael
AU - Haar, Bernd
AU - Ramôa, Bruno
AU - Lucyshyn, Thomas
AU - Feuchter, Michael
AU - Pinter, G.G.
AU - Speranza, Vito
AU - Pantani, Roberto
PY - 2022
DA - 2022/03/23
PB - Hindawi Limited
SP - 1-15
VL - 2022
SN - 2573-7619
ER -
BibTex
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BibTex (до 50 авторов) Скопировать
@article{2022_Schrank,
author = {Theresia Schrank and Michael Berer and Bernd Haar and Bruno Ramôa and Thomas Lucyshyn and Michael Feuchter and G.G. Pinter and Vito Speranza and Roberto Pantani},
title = {Injection Molding Simulation of Polyoxymethylene Using Crystallization Kinetics Data and Comparison with the Experimental Process},
journal = {Polymer Crystallization},
year = {2022},
volume = {2022},
publisher = {Hindawi Limited},
month = {mar},
url = {https://doi.org/10.1155/2022/2387752},
pages = {1--15},
doi = {10.1155/2022/2387752}
}