A kind of high viscosity modified asphalt and preparation method thereof
A modified asphalt, high-viscosity technology, applied in building components, building insulation materials, construction, etc., can solve the problems that the amount of polymer added has not been significantly reduced, and the compatibility problem has not been fundamentally solved, achieving excellent high temperature Anti-flow performance and low temperature performance and aging resistance, easy construction, and simple preparation method
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Embodiment 1
[0024] (1) Cut SBR and aromatic oil at 70°C with a high emulsification shearer (1500-3000r / min) for 40 minutes to prepare the extender mother liquor.
[0025] (2) Add the extender mother liquor, amine polyphosphate and thiosemicarbazide prepared in step (1) to 70# asphalt at a temperature of 130°C, and stir for 60 minutes to obtain a high-viscosity modified asphalt. The ratio of raw materials and product properties are shown in Table 1.
Embodiment 2
[0027] (1) Cut SBS (YH-791), part of polyphosphoric acid and aromatic oil at 80°C with a high-emulsification shearer (1500-3000r / min) for 50 minutes to prepare the extension agent mother liquor . Wherein step (1) adds 15% of polyphosphoric acid mass.
[0028] (2) Add the extender mother liquor, remaining polyphosphoric acid, and semicarbazide prepared in step (1) to 70# asphalt at a temperature of 140°C and stir for 60 minutes to prepare high-viscosity modified asphalt. The ratio of raw materials and product properties are shown in Table 1.
Embodiment 3
[0030] (1) Cut SBR, some polyphosphoric acid and aromatic oil at 70°C with a high-emulsification shearer (1500-3000r / min) for 50 minutes to prepare the extension agent mother liquor. Wherein step (1) adds 18% of polyphosphoric acid mass.
[0031] (2) Add the extender mother liquor, remaining polyphosphoric acid, and semicarbazide prepared in step (1) to 70# asphalt at a temperature of 150°C and stir for 60 minutes to obtain a high-viscosity modified asphalt. The ratio of raw materials and product properties are shown in Table 1.
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