Morphology, rheology, and physical properties of polymer-modified asphalt binders

[Display omitted] •Polymers can be used to improve the physical and rheological properties of asphalt binders.•Polymer modification requires further investigation especially regarding the low temperature properties.•Factors affecting the properties of polymer-modified asphalt binders (PMAs) are revi...

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Published inEuropean polymer journal Vol. 112; pp. 766 - 791
Main Authors Behnood, Ali, Modiri Gharehveran, Mahsa
Format Journal Article
LanguageEnglish
Published Oxford Elsevier Ltd 01.03.2019
Elsevier BV
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Abstract [Display omitted] •Polymers can be used to improve the physical and rheological properties of asphalt binders.•Polymer modification requires further investigation especially regarding the low temperature properties.•Factors affecting the properties of polymer-modified asphalt binders (PMAs) are reviewed.•Recently developed techniques to enhance the properties of PMAs are reviewed. Asphalt binders play an integral role in the performance and properties of asphalt mixtures. Increased traffic-related factors on the roadways such as heavier loads, higher traffic volume, and higher tire pressure combined with substantial variation in daily and seasonal temperatures of the pavement have been responsible for the asphalt pavements failure. To prevent or mitigate these failures, many attempts have been made by polymer scientists and civil engineers to improve the performance of asphalt pavements by modifying the properties of asphalt binders. A good modifier changes the failure properties such that binder yields more stresses and strains before failure. Modification of asphalt binders through the addition of a polymer to improve their rheological and physical properties has a long history in asphalt industry. Once the polymer is properly mixed with the asphalt binder, a swallowed polymer network is formed, which contributes to the changes in viscoelastic behavior. However, polymer-modified asphalt binders may have some drawbacks related to the poor solubility of polymers. Understanding the internal structure of polymer-modified asphalt binders has been the subject of numerous research studies. Available studies regarding the affecting parameters on the properties of the polymer-modified asphalt binders are reviewed here. Various types of polymers used in asphalt industry and their effects on the rheological, morphological, physical and mechanical properties of polymer-modified asphalt binders are also discussed in this paper. In addition, this paper provides a review on the techniques used to overcome/mitigate the shortcomings of conventional polymer-modified asphalt binders.
AbstractList Asphalt binders play an integral role in the performance and properties of asphalt mixtures. Increased traffic-related factors on the roadways such as heavier loads, higher traffic volume, and higher tire pressure combined with substantial variation in daily and seasonal temperatures of the pavement have been responsible for the asphalt pavements failure. To prevent or mitigate these failures, many attempts have been made by polymer scientists and civil engineers to improve the performance of asphalt pavements by modifying the properties of asphalt binders. A good modifier changes the failure properties such that binder yields more stresses and strains before failure. Modification of asphalt binders through the addition of a polymer to improve their rheological and physical properties has a long history in asphalt industry. Once the polymer is properly mixed with the asphalt binder, a swallowed polymer network is formed, which contributes to the changes in viscoelastic behavior. However, polymer-modified asphalt binders may have some drawbacks related to the poor solubility of polymers. Understanding the internal structure of polymer-modified asphalt binders has been the subject of numerous research studies. Available studies regarding the affecting parameters on the properties of the polymer-modified asphalt binders are reviewed here. Various types of polymers used in asphalt industry and their effects on the rheological, morphological, physical and mechanical properties of polymer-modified asphalt binders are also discussed in this paper. In addition, this paper provides a review on the techniques used to overcome/mitigate the shortcomings of conventional polymer-modified asphalt binders.
[Display omitted] •Polymers can be used to improve the physical and rheological properties of asphalt binders.•Polymer modification requires further investigation especially regarding the low temperature properties.•Factors affecting the properties of polymer-modified asphalt binders (PMAs) are reviewed.•Recently developed techniques to enhance the properties of PMAs are reviewed. Asphalt binders play an integral role in the performance and properties of asphalt mixtures. Increased traffic-related factors on the roadways such as heavier loads, higher traffic volume, and higher tire pressure combined with substantial variation in daily and seasonal temperatures of the pavement have been responsible for the asphalt pavements failure. To prevent or mitigate these failures, many attempts have been made by polymer scientists and civil engineers to improve the performance of asphalt pavements by modifying the properties of asphalt binders. A good modifier changes the failure properties such that binder yields more stresses and strains before failure. Modification of asphalt binders through the addition of a polymer to improve their rheological and physical properties has a long history in asphalt industry. Once the polymer is properly mixed with the asphalt binder, a swallowed polymer network is formed, which contributes to the changes in viscoelastic behavior. However, polymer-modified asphalt binders may have some drawbacks related to the poor solubility of polymers. Understanding the internal structure of polymer-modified asphalt binders has been the subject of numerous research studies. Available studies regarding the affecting parameters on the properties of the polymer-modified asphalt binders are reviewed here. Various types of polymers used in asphalt industry and their effects on the rheological, morphological, physical and mechanical properties of polymer-modified asphalt binders are also discussed in this paper. In addition, this paper provides a review on the techniques used to overcome/mitigate the shortcomings of conventional polymer-modified asphalt binders.
Author Behnood, Ali
Modiri Gharehveran, Mahsa
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  givenname: Ali
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  fullname: Behnood, Ali
  email: abehnood@purdue.edu
– sequence: 2
  givenname: Mahsa
  surname: Modiri Gharehveran
  fullname: Modiri Gharehveran, Mahsa
  email: mmodirig@purdue.edu
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IEDL.DBID .~1
ISSN 0014-3057
IngestDate Wed Aug 13 04:01:03 EDT 2025
Thu Apr 24 22:56:19 EDT 2025
Tue Jul 01 03:29:46 EDT 2025
Fri Feb 23 02:27:33 EST 2024
IsPeerReviewed true
IsScholarly true
Keywords PP
RET
PS
RTFOT
GTR
PAV
SEBS
WPE
BBR
Tg
EMA
GMA
MI
AESO
ZDDP
OMMT
UV
SMA
VA
Nanomaterial
TGA
EVA
NB
TOP
MAH
MMT
Morphology
MWCNT
SEM
SIS
PPA
ZDBC
EBA
CNT
TPE
LDPE
Asphalt binder
SB
HDPE
MFI
SBA
EPDM
Bio-oil
CB
SBR
PMA
SBS
Rheology
Polymer
LLDPE
PB
PE
PVC
PET
TR
Language English
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content type line 14
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PQID 2199901239
PQPubID 2045478
PageCount 26
ParticipantIDs proquest_journals_2199901239
crossref_primary_10_1016_j_eurpolymj_2018_10_049
crossref_citationtrail_10_1016_j_eurpolymj_2018_10_049
elsevier_sciencedirect_doi_10_1016_j_eurpolymj_2018_10_049
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2019-03-00
20190301
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PublicationTitle European polymer journal
PublicationYear 2019
Publisher Elsevier Ltd
Elsevier BV
Publisher_xml – name: Elsevier Ltd
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Snippet [Display omitted] •Polymers can be used to improve the physical and rheological properties of asphalt binders.•Polymer modification requires further...
Asphalt binders play an integral role in the performance and properties of asphalt mixtures. Increased traffic-related factors on the roadways such as heavier...
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SubjectTerms Addition polymerization
Asphalt
Asphalt binder
Asphalt mixes
Asphalt pavements
Bio-oil
Civil engineers
Failure
Mechanical properties
Morphology
Nanomaterial
Parameter modification
Performance enhancement
Petroleum
Physical properties
Polymer
Polymers
Rheological properties
Rheology
Roads & highways
Traffic volume
Viscoelasticity
Title Morphology, rheology, and physical properties of polymer-modified asphalt binders
URI https://dx.doi.org/10.1016/j.eurpolymj.2018.10.049
https://www.proquest.com/docview/2199901239
Volume 112
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