Photo-thermal hydrophobic anti-icing and anti-shedding coating material as well as preparation and application thereof
A coating material, anti-icing technology, applied in the coating and other directions, can solve the problems of poor anti-icing effect, short life, easy access to the surface of the wire, etc., to improve the anti-shedding performance, long duration, avoid dust, etc. sticking effect
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[0047] The present invention also provides a kind of preparation method of described coating material, comprises the steps:
[0048] (1) Disperse the modified acrylic resin in a solvent, then add a dispersant and stir evenly to obtain a solution A;
[0049] (2) Disperse the modified hydrophobic nanoparticles and the modified hydrophobic light-to-heat conversion nanoparticles in the solvent, add a dispersant, disperse at a high speed for 20-60 minutes to mix evenly, and obtain the dispersion B;
[0050] (3) Mix the dispersion B with the solution A, add a defoamer and a leveling agent, and stir at a high speed to obtain a photothermal conversion hydrophobic anti-icing coating.
[0051] The wetting and dispersing agent, defoamer and leveling agent used in the photothermal hydrophobic anti-icing and anti-shedding coating material of the present invention are the dispersant, defoaming agent and leveling agent used in conventional anti-icing coating materials , For example, wetting...
Embodiment 1
[0056] In this embodiment, a polymerized monomer containing a pyridine group is taken as an example. Measure 50 g of acrylic resin, add 10 g of vinylpyridine, 0.5 g of initiator potassium persulfate, and 200 mL of water, heat to 90° C. and stir for 4 hours to obtain a modified acrylic resin.
[0057] Synthesis of ferric oxide@carbon black nanoparticles with core-shell structure: Weigh 650g of ferrocene, dissolve it in 6.5L of acetone, add it to a conical flask, stir at a stirring rate of 300rpm for 30min, slowly add 220ml of hydrogen peroxide, and then proceed vigorously Stir for 30 minutes, then move to the reactor to react at 210°C for 72h, then wash twice with acetone, dry at 65°C for use.
[0058] Modification of photothermal conversion nanoparticles: Dissolve 200g of ferric oxide@carbon black nanoparticles in 1L of ethanol, add 300mL of ammonia water, stir at 40°C for 30min, then slowly add 10g of polydimethylsiloxane triethoxy After the base silane was reacted overnight...
Embodiment 2
[0062] This embodiment takes dopamine grafted on the surface of acrylic acid as an example. Weigh 500g of acrylic acid and add it to 2L of water, add 15g of 1-ethyl-(3-dimethylaminopropyl)carbodiimide hydrochloride, 6.6g of triethylamine, 3.1g of N-hydroxysuccinimide at one time , after stirring for 1 h, add dopamine and stir overnight for later use.
[0063] Synthesis of photothermal conversion nanoparticles: Weigh 650g of ferrocene, dissolve it in 6.5L of acetone and add it to the Erlenmeyer flask, stir at 400rpm for 30min, slowly add 220ml of hydrogen peroxide, and then vigorously stir for 30min, then move to the reaction The kettle was reacted at 210°C for 72h, then washed twice with acetone, and dried at 65°C for use.
[0064] Modification of photothermal conversion nanoparticles: Dissolve 200g of ferric oxide@carbon black nanoparticles in 1L of ethanol, add 300mL of ammonia water, stir at 40°C for 30min, then slowly add 10g of polydimethylsiloxane triethoxy After the b...
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