Method for rushing to repair damaged road surfaces rapidly
A fast and damaged technology, used in roads, roads, road repair and other directions, can solve the problems of long time for road repairs and affect traffic, save materials, ensure curing strength, and shorten the time for emergency repair and curing.
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Embodiment 1
[0051] The self-compacting fast-curing pavement repair material in this embodiment is prepared from the following components by weight according to the following method:
[0052] (1) Heat 60 parts of ceramic sand aggregate with a particle size of 70-140 mesh and a specific gravity of 1.8-2.0 to 150-160℃;
[0053] (2) Add 30 parts of the novolak resin to the ceramic sand aggregate while it is hot and stir evenly to obtain a stable mixture;
[0054] (3) Add 1 part of urotropine to the reactant obtained in step (2) while it is hot, stir it evenly, and cool down naturally;
[0055] (4) The reactant obtained in step (3) is cooled to room temperature, and crushed to a particle size of 70-140 mesh, and sieved to obtain the required repair material.
[0056] The repair material prepared in this example has been tested, and its strength can reach 45 MPa after only heating for 60 minutes, which can fully meet the strength requirements of airports or highway pavements.
Embodiment 2
[0058] The self-compacting fast-curing pavement repair material in this embodiment is prepared from the following components by weight according to the following method:
[0059] (1) 95 parts of ceramsite aggregate with a particle size of 70-140 mesh and a specific gravity of 1.7-2.5 are heated to 700-800°C, and then naturally cooled to 90-100°C;
[0060] (2) Add 4 parts of the thermoplastic boron phenolic resin to the ceramsite aggregate while it is hot and stir evenly to obtain a stable mixture;
[0061] (3) While it is hot, add 10 parts of urotropine to the reactant obtained in step (2), stir it evenly and then cool down naturally;
[0062] (4) The reactant obtained in step (3) is cooled to room temperature, and crushed to a particle size of 70-140 mesh, and sieved to obtain the required repair material.
[0063] The repair material prepared in this example has been tested and only needs to be heated for 65 minutes, and its strength can reach 48 MPa, which can fully meet the strength...
Embodiment 3
[0065] The self-compacting fast-curing pavement repair material in this embodiment is prepared from the following components by weight according to the following method:
[0066] (1) Heat 85 parts of small steel ball aggregate with a particle size of 20-40 mesh and a specific gravity of 7.9 to 160-200°C, and then naturally cool to 90-100°C;
[0067] (2) Add 10 parts of thermoplastic silicone modified epoxy resin to the small steel ball aggregate while it is hot, and mix it evenly to obtain a stable mixture;
[0068] (3) Add 2 parts of ammonium chloride to the reactant obtained in step (2) while it is hot, and stir it evenly and then cool down naturally;
[0069] (4) Cool the reactant obtained in step (3) to room temperature, crush it to a particle size of 20-40 mesh, and sieve to obtain the required repair material.
[0070] The repair material prepared in this example has been tested, and its strength can reach 60 MPa after only heating for 70 minutes, which can fully meet the strength...
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