Boron phenolics-titanium nano composite temperature and pressure resistant heavy anti-corrosive coating and preparation method thereof
A nano-composite, boron-phenolic technology, used in anti-corrosion coatings, coatings, etc., can solve the problems of poor substrate adhesion, short service life, low mechanical strength, etc., and achieve the effects of good adhesion, convenient construction and stable storage.
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[0039] 1. Preparation of modified boron phenolic polymer
[0040] The modified boron phenolic polymer has the properties of a thermosetting polymer, and the flexible -B-O- bond can improve the brittleness and mechanical strength of the coating. The three-way cross-linked structure of boron and titanium improves the heat resistance of the coating.
[0041] In parts by weight, 20-35 parts of boric acid or diboron trioxide, 1-4 parts of nano-titanium dioxide, 0.5-2.5 parts of butyl orthotitanate and 60-80 parts of phenol are refluxed at 90-110°C under the action of KOH catalyst After 6-8 hours, heat up to 160-180°C to react, distill off the water to form boric acid phenolic ester mixtures with different reaction degrees; then cool to below 80°C, add 30-50 parts of boric acid phenolic ester mixtures to 50-70 parts of paraformaldehyde Or paraformaldehyde or formaldehyde aqueous solution, react at 80-110°C for 2-4 hours, remove water and low boiling point products, make the gel tim...
Embodiment 1
[0071] 1. Preparation of nanocomposite mother liquor
[0072] In parts by weight, add 50 parts of nano-titanium dioxide and 10 parts of nano-silicon dioxide into 50 parts of acetone for ultrasonic dispersion (temperature T=40° C.) for 10 minutes; Oxylkane coupling agent, Disperbyk180 macromolecular dispersant accounting for 1.5% of the total weight of the above-mentioned nanoparticles and the modified boron phenolic polymer accounting for 8% of the total weight of the above-mentioned nanoparticles are carried out by ultrasonic (T=60°C) dispersion for 1h; finally in 2×10 4 Centrifuge 3 times at rpm to prepare nanocomposite mother liquor.
[0073] 2. Preparation of modified boron phenolic polymer:
[0074] In parts by weight, 35 parts of boric acid, 4 parts of nano-titanium dioxide, 1.5 parts of butyl orthotitanate and 61 parts of phenol were refluxed at 100°C for 8 hours under the action of KOH catalyst, and then heated to 180°C to react. After distilling off water, different...
Embodiment 2
[0093] 1. Preparation of nanocomposite mother liquor
[0094] In parts by weight, add 40 parts of nano-titanium dioxide and 20 parts of nano-silica to 40 parts of acetone for ultrasonic dispersion (temperature T=40° C.) for 20 minutes; Alkane coupling agent, account for the Solsperse-2000 polymer dispersant of 4% of above-mentioned nanoparticle gross weight and account for the modified boron phenolic polymer (T=50 ℃) of 10% of above-mentioned nanoparticle gross weight and disperse 1h; Finally, at 2.5 ×10 4 Centrifuge 3 times at rpm to prepare nanocomposite mother liquor.
[0095] 2. Preparation of modified boron phenolic polymer:
[0096] In parts by weight, 32 parts of diboron trioxide, 3 parts of nano-titanium dioxide, 1 part of butyl orthotitanate and 65 parts of phenol were refluxed at 100°C for 6 hours under the action of KOH catalyst, then heated to 180°C for reaction, and water was distilled off Finally, a mixture of boric acid phenolic esters with different degrees ...
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