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contributor authorLeilei He
contributor authorMingyuan Chen
contributor authorYawen Tan
contributor authorZhijie Zhao
contributor authorYongju Hu
contributor authorMeiling Zhao
date accessioned2024-04-27T22:22:32Z
date available2024-04-27T22:22:32Z
date issued2024/06/01
identifier other10.1061-JMCEE7.MTENG-17313.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4296514
description abstractThe rainy season in hot and humid areas can cause various diseases to weaken the performance of asphalt pavement. To determine the influence of rainfall on the viscoelastic properties of asphalt binder, a dry–wet cycle aging method was used to simulate the aging behavior of Gaotong base asphalt binder (GBA) and styrene–butadiene-styrene (SBS) modified asphalt binder (SBSMA), and the complex shear modulus, fatigue characteristics, and creep compliance of binders during dry–wet cycle aging were studied. The results show that the complex modulus of binders raised with the increase of dry–wet cycles time. Further, according to the simplified viscoelastic continuous damage (S-VECD) model, the damage of aged binders went up while the integrity went down sharply. Moreover, the fatigue life of SBSMA was greatly affected by aging, still far better than that of GBA. The fatigue parameters had a certain correlation with the complex modulus and they could predict the fatigue characteristics of aged binders. The creep recovery rate of GBA increased with the increase of the dry–wet cycle aging time, opposite to SBSMA. Furthermore, compared with thermal oxidative aging, the damage to the asphalt binder was worse in the later stage of dry–wet cycle aging because of the dissolution of the polar groups of binders and the continuous exposure of new surfaces.
publisherASCE
titleEvaluation of the Viscoelastic Characteristic of Asphalt Binder with Dry–Wet Cycle Aging
typeJournal Article
journal volume36
journal issue6
journal titleJournal of Materials in Civil Engineering
identifier doi10.1061/JMCEE7.MTENG-17313
journal fristpage04024119-1
journal lastpage04024119-9
page9
treeJournal of Materials in Civil Engineering:;2024:;Volume ( 036 ):;issue: 006
contenttypeFulltext


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