Coal-fired power plant chimney anticorrosion material and preparation method thereof
An anti-corrosion material, a technology for coal-fired power plants, applied in anti-corrosion coatings, epoxy resin coatings, coatings, etc., can solve the problems of easy cracking of coatings, difficult construction quality control, frequent maintenance, etc., to improve mechanical strength and fatigue resistance. , long-term high-efficiency protection, and the effect of increasing anti-penetration performance
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[0049] The embodiment of the present invention also provides the preparation method of above-mentioned chimney anticorrosion material, comprises the following steps:
[0050] S1. Preparation of component A and component D, the preparation sequence of component A and component D is not limited;
[0051] Preparation of component A: in parts by mass, preheat 60-98 parts of furan-modified epoxy resin to 40°C-60°C, add 0.1-0.3 parts of defoamer, 1-3 parts of organic solvent, Disperse at a speed of 800-1000 rpm for 15-30 minutes by a high-speed stirring disperser to obtain component A;
[0052] Preparation of component D: in parts by mass, preheat 60-98 parts of furan-modified epoxy resin to 40°C-60°C, add 0.1-0.3 parts of defoamer, 1-3 parts of organic solvent, Use a high-speed stirring disperser to disperse at a speed of 800-1000rpm (rotation rate per minute) for 3-5 minutes, keep the speed, and gradually add 20-40 parts of glass flakes and 5-10 parts of pigments and fillers, and...
Embodiment 1
[0060] This embodiment provides a coal-fired power plant desulfurization chimney anti-corrosion material with a three-layer structure. The anti-corrosion material includes an undercoat, an intermediate coat, and a top coat. The undercoat includes group A with a mass ratio of 100:35:0.3 component, B component, and C component; the intermediate coating includes D component, B component, and E component with a mass ratio of 100:35:25; the top coat includes D component with a mass ratio of 100:35:60 points, B component, F component; in parts by mass,
[0061] Component A includes 98 parts of furan-modified epoxy resin, 0.2 parts of polysiloxane, and 2 parts of toluene;
[0062] Component B includes 35 parts of low-viscosity modified aromatic amine curing agent;
[0063] Component C includes 0.3 parts of tetrabutyl titanate;
[0064] Component D includes 98 parts of furan-modified epoxy resin, 0.2 part of polysiloxane, 2 parts of toluene, 30 parts of 80-mesh glass flakes, 8 parts...
Embodiment 2
[0075] This embodiment provides a coal-fired power plant desulfurization chimney anti-corrosion material with a three-layer structure. The anti-corrosion material includes an undercoat, an intermediate coat, and a top coat. The undercoat includes group A with a mass ratio of 100:30:0.25 component, B component, and C component; the intermediate coating includes D component, B component, and E component with a mass ratio of 100:30:30; the top coat includes D component with a mass ratio of 100:30:80 points, B component, F component; in parts by mass,
[0076] Component A includes 98 parts of furan-modified epoxy resin, 0.1 part of polydimethylsiloxane, and 1 part of cyclohexanone;
[0077] Component B includes 30 parts of low-viscosity modified aromatic amine curing agent;
[0078] Component C includes 0.2 parts of γ-glycidyl etheroxypropyl trimethoxysilane;
[0079] Component D includes 98 parts of furan-modified epoxy resin, 0.15 parts of polydimethylsiloxane, 1.8 parts of cy...
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