Correlation between Microstructure and Rheological Properties of Broad Molecular Weight Distribution High Density Polyethylenes

In this article, the correlation between molecular microstructure and rheological behavior for three different grades of high density polyethylene with broad molecular weight distribution have been investigated. Structural parameters such as Mn, Mw, Mz, molecular weight distribution (MWD) and branch...

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Main Authors: Mohammad Javad Shirkavand, Hamed Azizi, Ismaile Ghasemi, Mohammad Karabi, Reza Rashedi
Format: Article
Language:fas
Published: Iran Polymer and Petrochemical Institute 2015-04-01
Series:علوم و تکنولوژی پلیمر
Subjects:
Online Access:http://jips.ippi.ac.ir/article_1159_d99f47684a948bebaac81587641e19cd.pdf
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author Mohammad Javad Shirkavand
Hamed Azizi
Ismaile Ghasemi
Mohammad Karabi
Reza Rashedi
author_facet Mohammad Javad Shirkavand
Hamed Azizi
Ismaile Ghasemi
Mohammad Karabi
Reza Rashedi
author_sort Mohammad Javad Shirkavand
collection DOAJ
description In this article, the correlation between molecular microstructure and rheological behavior for three different grades of high density polyethylene with broad molecular weight distribution have been investigated. Structural parameters such as Mn, Mw, Mz, molecular weight distribution (MWD) and branching index were characterized by high temperature Gel Permeation Chromatography (GPC) test. GPC results showed that BL4 and EX3 have bigger weight average molecular weight and narrower molecular weight distribution, respectively. Furthermore,it was found from GPC results that all three HDPE has a broad MWD and EX3 has more short chain branches than two other samples. Rheological characterization was done in a Mechanical Compact Rheometer (MCR) in rotational and dynamic modes at both linear and nonlinear viscoelastic region. From rheological characterization the zero shear viscosity (η0), relaxation time and relaxation time distribution, stress relaxation modulus and damping factor were obtained and by utilizing relaxation time spectrum function (h(τ)), molecular weight distribution was calculated for each sample and compared with GPC results. The relationship between zero shear viscosity with molecular weight and MWD at 180 ºC obtained. After calculating molecular weight distribution function and average molecular weights using different mixing parameters (β), by choosing β=0.73, a good correlation between molecular parameters obtained from rheological data with those of GPC results was obtained. After calculating stress relaxation modulus and consequently damping factor for each sample, comparing to Doi-Edwards model, it was found that the damping function type C is an appropriate damping function type for selected polyethylenes.
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spelling doaj.art-b1a48f151ce9465484e203365adb1c4b2022-12-21T19:28:44ZfasIran Polymer and Petrochemical Instituteعلوم و تکنولوژی پلیمر1016-32552008-08832015-04-01281382710.22063/jipst.2015.11591159Correlation between Microstructure and Rheological Properties of Broad Molecular Weight Distribution High Density PolyethylenesMohammad Javad Shirkavand0Hamed Azizi1Ismaile Ghasemi2Mohammad Karabi3Reza Rashedi4Department of Plastics, Iran Polymer and Petrochemical Institute, P.O. Box: 14975-112, Tehran, IranDepartment of Plastics, Iran Polymer and Petrochemical Institute, P.O. Box: 14975-112, Tehran, IranDepartment of Plastics, Iran Polymer and Petrochemical Institute, P.O. Box: 14975-112, Tehran, IranDepartment of Plastics, Iran Polymer and Petrochemical Institute, P.O. Box: 14975-112, Tehran, IranResearch and Development Unit, Jam Petrochemical Company, Pars Free Economic Zone, Postal Code: 1434843145, Assaluyeh, IranIn this article, the correlation between molecular microstructure and rheological behavior for three different grades of high density polyethylene with broad molecular weight distribution have been investigated. Structural parameters such as Mn, Mw, Mz, molecular weight distribution (MWD) and branching index were characterized by high temperature Gel Permeation Chromatography (GPC) test. GPC results showed that BL4 and EX3 have bigger weight average molecular weight and narrower molecular weight distribution, respectively. Furthermore,it was found from GPC results that all three HDPE has a broad MWD and EX3 has more short chain branches than two other samples. Rheological characterization was done in a Mechanical Compact Rheometer (MCR) in rotational and dynamic modes at both linear and nonlinear viscoelastic region. From rheological characterization the zero shear viscosity (η0), relaxation time and relaxation time distribution, stress relaxation modulus and damping factor were obtained and by utilizing relaxation time spectrum function (h(τ)), molecular weight distribution was calculated for each sample and compared with GPC results. The relationship between zero shear viscosity with molecular weight and MWD at 180 ºC obtained. After calculating molecular weight distribution function and average molecular weights using different mixing parameters (β), by choosing β=0.73, a good correlation between molecular parameters obtained from rheological data with those of GPC results was obtained. After calculating stress relaxation modulus and consequently damping factor for each sample, comparing to Doi-Edwards model, it was found that the damping function type C is an appropriate damping function type for selected polyethylenes.http://jips.ippi.ac.ir/article_1159_d99f47684a948bebaac81587641e19cd.pdfhigh density polyethylenemolecular structurerheological propertiesmolecular weight distributiondamping function
spellingShingle Mohammad Javad Shirkavand
Hamed Azizi
Ismaile Ghasemi
Mohammad Karabi
Reza Rashedi
Correlation between Microstructure and Rheological Properties of Broad Molecular Weight Distribution High Density Polyethylenes
علوم و تکنولوژی پلیمر
high density polyethylene
molecular structure
rheological properties
molecular weight distribution
damping function
title Correlation between Microstructure and Rheological Properties of Broad Molecular Weight Distribution High Density Polyethylenes
title_full Correlation between Microstructure and Rheological Properties of Broad Molecular Weight Distribution High Density Polyethylenes
title_fullStr Correlation between Microstructure and Rheological Properties of Broad Molecular Weight Distribution High Density Polyethylenes
title_full_unstemmed Correlation between Microstructure and Rheological Properties of Broad Molecular Weight Distribution High Density Polyethylenes
title_short Correlation between Microstructure and Rheological Properties of Broad Molecular Weight Distribution High Density Polyethylenes
title_sort correlation between microstructure and rheological properties of broad molecular weight distribution high density polyethylenes
topic high density polyethylene
molecular structure
rheological properties
molecular weight distribution
damping function
url http://jips.ippi.ac.ir/article_1159_d99f47684a948bebaac81587641e19cd.pdf
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AT mohammadkarabi correlationbetweenmicrostructureandrheologicalpropertiesofbroadmolecularweightdistributionhighdensitypolyethylenes
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