Modeling of pvT behavior of semi-crystalline polymer based on the two-domain Tait equation of state for injection molding

The absence of the influence of cooling rate in the pressure–specific volume–temperature (pvT) models makes them inadequate in the process simulation of injection molding. This work derived new equations of state (EoS) from the traditional two-domain Tait model that describes the pvT behavior of sem...

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Main Authors: Jian Wang, Christian Hopmann, Mauritius Schmitz, Tobias Hohlweck, Jens Wipperfürth
Format: Article
Language:English
Published: Elsevier 2019-12-01
Series:Materials & Design
Online Access:http://www.sciencedirect.com/science/article/pii/S0264127519305878
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spelling doaj-edbfeb5236614ff6a93af96d572e60fb2020-11-24T21:44:15ZengElsevierMaterials & Design0264-12752019-12-01183Modeling of pvT behavior of semi-crystalline polymer based on the two-domain Tait equation of state for injection moldingJian Wang0Christian Hopmann1Mauritius Schmitz2Tobias Hohlweck3Jens Wipperfürth4College of Mechanical and Electrical Engineering, Beijing University of Chemical Technology, Beijing 100029, China; Institute of Plastics Processing (IKV), RWTH Aachen University, Aachen 52062, Germany; Corresponding author at: 15 Beisanhuan East Road, Chaoyang, Beijing 100029, China.Institute of Plastics Processing (IKV), RWTH Aachen University, Aachen 52062, GermanyInstitute of Plastics Processing (IKV), RWTH Aachen University, Aachen 52062, GermanyInstitute of Plastics Processing (IKV), RWTH Aachen University, Aachen 52062, GermanyInstitute of Plastics Processing (IKV), RWTH Aachen University, Aachen 52062, GermanyThe absence of the influence of cooling rate in the pressure–specific volume–temperature (pvT) models makes them inadequate in the process simulation of injection molding. This work derived new equations of state (EoS) from the traditional two-domain Tait model that describes the pvT behavior of semi-crystalline polymers in both molten and solid state. Especially, the cooling rate was considered. The second aim of this work is to solve the discontinuity problem of the traditional two-domain Tait model. A continuous two-domain Tait EoS was developed. A good agreement between the calculations and experimental results was achieved. The new pvT models were successfully applied in the prediction of specific volume as a function of temperature, pressure and cooling rate during injection molding. A higher value of the specific volume was predicted when the cooling rate was considered. Combining the continuous two-domain Tait EoS, more accurate results can be obtained especially at the transition phase from melt to solid of the semi-crystalline polymer. Keywords: pvT, Specific volume, Semi-crystalline polymer, Equation of state, Cooling rate, Injection moldinghttp://www.sciencedirect.com/science/article/pii/S0264127519305878
collection DOAJ
language English
format Article
sources DOAJ
author Jian Wang
Christian Hopmann
Mauritius Schmitz
Tobias Hohlweck
Jens Wipperfürth
spellingShingle Jian Wang
Christian Hopmann
Mauritius Schmitz
Tobias Hohlweck
Jens Wipperfürth
Modeling of pvT behavior of semi-crystalline polymer based on the two-domain Tait equation of state for injection molding
Materials & Design
author_facet Jian Wang
Christian Hopmann
Mauritius Schmitz
Tobias Hohlweck
Jens Wipperfürth
author_sort Jian Wang
title Modeling of pvT behavior of semi-crystalline polymer based on the two-domain Tait equation of state for injection molding
title_short Modeling of pvT behavior of semi-crystalline polymer based on the two-domain Tait equation of state for injection molding
title_full Modeling of pvT behavior of semi-crystalline polymer based on the two-domain Tait equation of state for injection molding
title_fullStr Modeling of pvT behavior of semi-crystalline polymer based on the two-domain Tait equation of state for injection molding
title_full_unstemmed Modeling of pvT behavior of semi-crystalline polymer based on the two-domain Tait equation of state for injection molding
title_sort modeling of pvt behavior of semi-crystalline polymer based on the two-domain tait equation of state for injection molding
publisher Elsevier
series Materials & Design
issn 0264-1275
publishDate 2019-12-01
description The absence of the influence of cooling rate in the pressure–specific volume–temperature (pvT) models makes them inadequate in the process simulation of injection molding. This work derived new equations of state (EoS) from the traditional two-domain Tait model that describes the pvT behavior of semi-crystalline polymers in both molten and solid state. Especially, the cooling rate was considered. The second aim of this work is to solve the discontinuity problem of the traditional two-domain Tait model. A continuous two-domain Tait EoS was developed. A good agreement between the calculations and experimental results was achieved. The new pvT models were successfully applied in the prediction of specific volume as a function of temperature, pressure and cooling rate during injection molding. A higher value of the specific volume was predicted when the cooling rate was considered. Combining the continuous two-domain Tait EoS, more accurate results can be obtained especially at the transition phase from melt to solid of the semi-crystalline polymer. Keywords: pvT, Specific volume, Semi-crystalline polymer, Equation of state, Cooling rate, Injection molding
url http://www.sciencedirect.com/science/article/pii/S0264127519305878
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