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Static and dynamic performance and temperature sensitivity of emulsified asphalt concrete

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Document pages: 9 pages

Abstract: Asphalt concrete is a typical rheological material, which is hard brittle at low temperature and soft plastic fracture at high temperature; Temperature has a great influence on the mechanical properties of asphalt concrete. In order to eliminate the environmental pollution caused by hot asphalt construction, cationic emulsified asphalt can be used. In this paper, the temperature control system of static and dynamic triaxial test equipment is reformed to realize the static and dynamic performance of emulsified asphalt concrete at different temperatures. The temperature sensitivity of emulsified asphalt concrete materials is studied, including static stress-strain relationship, static strength, dynamic elastic modulus, damping ratio and so on. The results show that (1) temperature has a great influence on the triaxial stress-strain relationship curve of the asphalt concrete. The lower the temperature, the greater the initial tangent modulus of asphalt concrete and the higher the intensity; the more obvious the softening trend, the smaller the failure strain of the specimen and the more obvious the extent of shear dilatancy. When the temperature is below 15.4°C, the temperature sensitivity of the modulus and strength is stronger significantly. (2) With the temperature rising, the asphalt concrete gradually shifts from an elastic state to a viscoelastic state, the dynamic modulus gradually reduces, and the damping ratio increases. When the temperature is above 15.4°C, the temperature sensitivity is obviously stronger for the dynamic elastic modulus and damping ratio. (3) The static and dynamic properties of asphalt concrete are very sensitive to the temperature. The test temperature should be made clear for the static and dynamic tests of asphalt concrete. The specimen temperature and the test ambient temperature must be strictly controlled.

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