Polymer emulsion microcapsule for cement concrete crack self-repairing and preparation method thereof
A technology of polymer emulsion and cement concrete, applied in the field of concrete, can solve the problems of high strength of capsule wall, difficult reaction between liquid repairing agent and curing agent, and difficulty in realizing self-repair of concrete cracks, so as to achieve the effect of prolonging service life.
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Embodiment 1
[0026] A kind of acrylic acid emulsion microcapsule is prepared by the following method:
[0027] (1) Weigh 35 parts of paraffin wax (melting point is 50~52 ℃), 5 parts of C9 petroleum resin, 60 parts of acrylic acid emulsion (solid content 46%) according to the required parts by weight of each raw material;
[0028] (2) Mix 35 parts of paraffin and 20 parts of perfluorotributylamine, heat to 65°C, and stir at 300-400rpm for 30 minutes to melt and disperse the paraffin in the perfluorotributylamine solution;
[0029] (3) Add 5 parts of petroleum resin into a three-necked flask with a heating mantle, heat to 130-140°C, stir at a speed of 300-400rpm for 15 minutes, then add the above paraffin / perfluorotributylamine mixture into the three-necked flask to control The temperature is 85°C, and the stirring is continued for 15 minutes;
[0030] (4) Add 60 parts of acrylic emulsion into a three-necked flask, control the temperature at 70°C, and stir at 300-400rpm for 10min;
[0031]...
Embodiment 2
[0038] An ethylene-vinyl acetate copolymer emulsion microcapsule, the parts by weight of each raw material are: 42 parts of paraffin wax (fusing point is 54~56 ℃), 8 parts of C9 petroleum resin, 50 parts of ethylene-vinyl acetate copolymer emulsion (solid content 45%); the preparation method is the same as in Example 1.
[0039] The average particle size and wall thickness of the microcapsules prepared in this example were tested, and the coating ratio and capsule core / capsule wall mass ratio were tested and calculated. The results are listed in Table 2. The results in Table 2 show that the ethylene-vinyl acetate copolymer emulsion microcapsules prepared in this example have a small average particle size, a thin wall thickness, a high coating rate and a high capsule core / capsule wall mass ratio.
[0040] The microcapsules that table 2 embodiment 2 prepares
[0041] Average particle size (μm)
Embodiment 3
[0043] A polyurethane emulsion microcapsule, the parts by weight of each raw material are: 42 parts of paraffin wax (fusing point is 54~56 ℃), 8 parts of C5 petroleum resin, 50 parts of polyurethane emulsion (solid content 45%); Preparation method is the same as embodiment 1 .
[0044] The average particle size and wall thickness of the microcapsules prepared in this example were tested, and the coating ratio and capsule core / capsule wall mass ratio were tested and calculated. The results are listed in Table 3. The results in Table 3 show that the average particle size of the polyurethane emulsion microcapsules prepared in this example is small, the wall thickness is thin, the coating rate and the capsule core / capsule wall mass ratio are high.
[0045] The microcapsules that table 3 embodiment 3 prepares
[0046] Average particle size (μm)
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