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Simplified viscosity evaluating method of high viscosity asphalt binders
Abstract In order to establish a simplified viscosity evaluating method of high viscosity asphalt binders (HVABs), shear rate sweep test in the shear rate range of 1.25 × 10−6–1,250 s−1 was performed. Results showed that HVABs exhibited yield pseudo-plastic fluid behavior at 60 °C and the overlapped range of the first Newtonian region was 8 × 10−5–2 × 10−2 s−1. Based on the results, the simplified shear rate sweep test in the shear rate range of 0.001–0.1 s−1 was proposed and low shear viscosity at 0.01 s−1 (LSV0.01) was suggested as the viscosity evaluating indicator of HVABs, which exhibited both close values to zero shear viscosity and significant correlation with rutting resistance of porous asphalt.
Simplified viscosity evaluating method of high viscosity asphalt binders
Abstract In order to establish a simplified viscosity evaluating method of high viscosity asphalt binders (HVABs), shear rate sweep test in the shear rate range of 1.25 × 10−6–1,250 s−1 was performed. Results showed that HVABs exhibited yield pseudo-plastic fluid behavior at 60 °C and the overlapped range of the first Newtonian region was 8 × 10−5–2 × 10−2 s−1. Based on the results, the simplified shear rate sweep test in the shear rate range of 0.001–0.1 s−1 was proposed and low shear viscosity at 0.01 s−1 (LSV0.01) was suggested as the viscosity evaluating indicator of HVABs, which exhibited both close values to zero shear viscosity and significant correlation with rutting resistance of porous asphalt.
Simplified viscosity evaluating method of high viscosity asphalt binders
Li, Lihan (Autor:in) / Geng, Han (Autor:in) / Sun, Yanna (Autor:in)
Materials and Structures ; 48 ; 2147-2156
02.04.2014
10 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
High viscosity asphalt binder , Shear rate sweep test , Yield stress , First Newtonian region , Zero shear viscosity , Low shear viscosity , Capillary viscosity Engineering , Structural Mechanics , Materials Science, general , Theoretical and Applied Mechanics , Operating Procedures, Materials Treatment , Civil Engineering , Building Materials
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