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effect of binder rheology and aggregate gradation on the permanent deformation of asphalt mixtures
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نویسنده
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mota r.v. ,kuchiishi a.k. ,takahashi m.m. ,souza g. de ,camargo f.f. ,bessa i.s. ,vasconcelos k.l. ,bernucci l.l.b.
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منبع
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international journal of civil engineering - 2021 - دوره : 19 - شماره : 7 - صفحه:777 -787
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چکیده
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Rutting is one of the main sources of distress in asphalt pavements and has been widely studied because it influences safety and maintenance costs. to mitigate this distress, the selection of adequate asphalt binder and aggregates and an appropriate balance between them are key elements. this paper analyzed seven asphalt binders (2 neat, 3 polymer-modified, and 2 rubber-asphalt binders) and asphalt mixtures with different gradations (19-mm dense-graded and 12.5-mm gap-graded asphalt mixtures). the asphalt binders were evaluated in terms of rheology with the use of a dynamic shear rheometer (dsr) and a bending beam rheometer (bbr) to obtain the high- and low-performance grade (pg) temperatures. additionally, multiple stress creep and recovery (mscr) tests were performed to analyze the rutting potential of the materials at different temperatures. to evaluate the effect of the mineral skeleton on the asphalt mixtures, the laboratoire central des ponts et chaussées (lcpc) wheel tracking rutting test was performed. the polymer-modified binders (pmbs) and the asphalt mixtures produced with them were the most resistant to permanent deformation with low values of rut depth (< 2.5%). in general, the gap-graded mixtures had better resistance than the dense-graded mixtures; however, this comparison is dependent on the type of asphalt binder. relationships between the binder and mixture parameters were also proposed and they demonstrated a good relationship between the nonrecoverable creep compliance of the binders (jnr) and the rut depth of the dense mixtures (r2 = 0.81); however, no significant relationship was found for the gap-graded mixtures (r2 = 0.52).
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کلیدواژه
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asphalt mixtures; lcpc wheel tracking rutting test; modified asphalt binder; multiple stress creep and recovery binder test; nominal maximum aggregate size; rutting resistance
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آدرس
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university of são paulo, department of transportation engineering, brazil, north carolina state university, department of civil, construction, and environmental engineering, usa, university of são paulo, department of transportation engineering, brazil, university of são paulo, department of transportation engineering, brazil, department of pavement maintenance and conservation, brazil, university of são paulo, department of transportation engineering, brazil, university of são paulo, department of transportation engineering, brazil, university of são paulo, department of transportation engineering, brazil
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پست الکترونیکی
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iuribessa@usp.br
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Authors
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