Evaluating the effect of asphalt binder modification on the low-temperature cracking resistance of hot mix asphalt

This study focused primarily on the effects of various polymer modifications on the low-temperature cracking performance of asphalt binders and resultant mixtures. Two air-blown bitumens were blended with four polymers with or without the addition of polyphosphoric acid (PPA). The low-temperature pr...

Full description

Bibliographic Details
Main Authors: B.B. Teltayev, C.O. Rossi, G.G. Izmailova, E.D. Amirbayev, A.O. Elshibayev
Format: Article
Language:English
Published: Elsevier 2019-12-01
Series:Case Studies in Construction Materials
Online Access:http://www.sciencedirect.com/science/article/pii/S2214509518303711
id doaj-41efe6d181c049438d96b82b9058c147
record_format Article
spelling doaj-41efe6d181c049438d96b82b9058c1472020-11-25T02:32:45ZengElsevierCase Studies in Construction Materials2214-50952019-12-0111Evaluating the effect of asphalt binder modification on the low-temperature cracking resistance of hot mix asphaltB.B. Teltayev0C.O. Rossi1G.G. Izmailova2E.D. Amirbayev3A.O. Elshibayev4Kazakhstan Highway Research Institute, Almaty, 050061, Kazakhstan; Corresponding author.Department of Chemistry and Chemical Technologies, University of Calabria, Rende, ItalyKazakhstan Highway Research Institute, Almaty, 050061, KazakhstanKazakhstan Highway Research Institute, Almaty, 050061, KazakhstanKazakhstan Highway Research Institute, Almaty, 050061, KazakhstanThis study focused primarily on the effects of various polymer modifications on the low-temperature cracking performance of asphalt binders and resultant mixtures. Two air-blown bitumens were blended with four polymers with or without the addition of polyphosphoric acid (PPA). The low-temperature properties of the neat bitumens and the modified binders were characterized using bending beam rheometer (BBR). The prismatic samples of dense graded asphalt mixtures with the same content of different binders of 4.7% by weight were tested on direct tension at constant strain rate. The low-temperature cracking of the mixtures was also evaluated by tensile stress restrained specimen test (TSRST). The results indicated that the low-temperature parameters were dependent on base bitumen and on polymer modification. For all tested binders, the Superpave criterion E<300MPa appeared to be more restrictive than criterion m>0.30. Polymer modification showed significant benefits as compared to the corresponding base bitumen for direct tensile strength of asphalt mix at low temperatures. Addition of PPA reduced the strength at −30°C while raised at −20°C and −10°C. The BBR limiting binder stiffness temperature was close to the TSRST critical asphalt mix cracking temperature. Keywords: Asphalt pavement, Polymer modification, Thermal stress, Low-temperature cracking, Tensile strength, Critical temperaturehttp://www.sciencedirect.com/science/article/pii/S2214509518303711
collection DOAJ
language English
format Article
sources DOAJ
author B.B. Teltayev
C.O. Rossi
G.G. Izmailova
E.D. Amirbayev
A.O. Elshibayev
spellingShingle B.B. Teltayev
C.O. Rossi
G.G. Izmailova
E.D. Amirbayev
A.O. Elshibayev
Evaluating the effect of asphalt binder modification on the low-temperature cracking resistance of hot mix asphalt
Case Studies in Construction Materials
author_facet B.B. Teltayev
C.O. Rossi
G.G. Izmailova
E.D. Amirbayev
A.O. Elshibayev
author_sort B.B. Teltayev
title Evaluating the effect of asphalt binder modification on the low-temperature cracking resistance of hot mix asphalt
title_short Evaluating the effect of asphalt binder modification on the low-temperature cracking resistance of hot mix asphalt
title_full Evaluating the effect of asphalt binder modification on the low-temperature cracking resistance of hot mix asphalt
title_fullStr Evaluating the effect of asphalt binder modification on the low-temperature cracking resistance of hot mix asphalt
title_full_unstemmed Evaluating the effect of asphalt binder modification on the low-temperature cracking resistance of hot mix asphalt
title_sort evaluating the effect of asphalt binder modification on the low-temperature cracking resistance of hot mix asphalt
publisher Elsevier
series Case Studies in Construction Materials
issn 2214-5095
publishDate 2019-12-01
description This study focused primarily on the effects of various polymer modifications on the low-temperature cracking performance of asphalt binders and resultant mixtures. Two air-blown bitumens were blended with four polymers with or without the addition of polyphosphoric acid (PPA). The low-temperature properties of the neat bitumens and the modified binders were characterized using bending beam rheometer (BBR). The prismatic samples of dense graded asphalt mixtures with the same content of different binders of 4.7% by weight were tested on direct tension at constant strain rate. The low-temperature cracking of the mixtures was also evaluated by tensile stress restrained specimen test (TSRST). The results indicated that the low-temperature parameters were dependent on base bitumen and on polymer modification. For all tested binders, the Superpave criterion E<300MPa appeared to be more restrictive than criterion m>0.30. Polymer modification showed significant benefits as compared to the corresponding base bitumen for direct tensile strength of asphalt mix at low temperatures. Addition of PPA reduced the strength at −30°C while raised at −20°C and −10°C. The BBR limiting binder stiffness temperature was close to the TSRST critical asphalt mix cracking temperature. Keywords: Asphalt pavement, Polymer modification, Thermal stress, Low-temperature cracking, Tensile strength, Critical temperature
url http://www.sciencedirect.com/science/article/pii/S2214509518303711
work_keys_str_mv AT bbteltayev evaluatingtheeffectofasphaltbindermodificationonthelowtemperaturecrackingresistanceofhotmixasphalt
AT corossi evaluatingtheeffectofasphaltbindermodificationonthelowtemperaturecrackingresistanceofhotmixasphalt
AT ggizmailova evaluatingtheeffectofasphaltbindermodificationonthelowtemperaturecrackingresistanceofhotmixasphalt
AT edamirbayev evaluatingtheeffectofasphaltbindermodificationonthelowtemperaturecrackingresistanceofhotmixasphalt
AT aoelshibayev evaluatingtheeffectofasphaltbindermodificationonthelowtemperaturecrackingresistanceofhotmixasphalt
_version_ 1724817993790128128