Oxygen-releasing quick curing patching material as well as preparation method and application of material
A technology of rapid curing and repairing materials, applied in the field of foundry materials, can solve the problems that materials are not suitable for rapid curing methods and long repair time, and achieve the effect of shortening repair curing time, saving materials, and improving curing strength.
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Embodiment 1
[0042] The oxygen-releasing fast-curing pavement repair material described in this embodiment is prepared according to the following method from the following components by weight:
[0043] (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°C;
[0044] (2) heating and melting 30 parts of thermoplastic phenolic resin, and adding it into the ceramic sand aggregate while it is hot and stirring evenly to obtain a stable coating material;
[0045] (3) Mix 1 part of urotropine and 0.5 part of solid potassium permanganate particles evenly, and add 1.5 parts of water to disperse them evenly;
[0046] (4) Mix the uniform dispersion liquid obtained in step (3) with the coating material obtained in step (2) while it is hot, stir evenly, and heat to evaporate all the water in it;
[0047] (5) Cool the reactant obtained in step (4) to room temperature, crush it to a particle size of 70-140 mesh, and sieve it to obta...
Embodiment 2
[0050] The oxygen-releasing fast-curing pavement repair material described in this embodiment is prepared according to the following method from the following components by weight:
[0051] (1) Heat 95 parts of ceramsite aggregate with a particle size of 70-140 mesh and a specific gravity of 1.7-2.5 to 700-800°C, and then naturally cool to 90-100°C;
[0052] (2) Heat and melt 4 parts of thermoplastic boron phenolic resin, and add it to the ceramsite aggregate while it is hot and stir evenly to obtain a stable coating material;
[0053] (3) Mix 10 parts of urotropine and 1 part of solid potassium chlorate particles evenly, and add 4 parts of water to disperse them evenly;
[0054] (4) Mix the uniform dispersion liquid obtained in step (3) with the coating material obtained in step (2) while it is hot, stir evenly, and heat to evaporate all the water in it;
[0055] (5) Cool the reactant obtained in step (4) to room temperature, crush it to a particle size of 70-140 mesh, and sie...
Embodiment 3
[0058] The oxygen-releasing fast-curing pavement repair material described in this embodiment is prepared according to the following method from the following components by weight:
[0059] (1) Heat 85 parts of small steel ball aggregates 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;
[0060] (2) Heat and melt 10 parts of the thermoplastic silicone modified epoxy resin, and add it into the small steel ball aggregate while it is hot and mix evenly to obtain a stable coating material;
[0061] (3) Mix 2 parts of ammonium chloride and 0.6 parts of solid sodium nitrate particles evenly, and add 2.5 parts of water to disperse them evenly;
[0062] (4) Mix the uniform dispersion liquid obtained in step (3) with the coating material obtained in step (2) while it is hot, stir evenly, and heat to evaporate all the water in it;
[0063] (5) Cool the reactant obtained in step (4) to room temperature, crush it to a par...
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