Anti-fouling coating capable of releasing anti-fouling agent and preparation method thereof
An antifouling agent and antifouling technology, applied in antifouling/underwater coatings, coatings, paints containing biocides, etc., can solve the problems that limit the development and application of marine antifouling coatings, the anti-biological activity is not easy to maintain, and the Easy to long-term secretion and other problems, to achieve the effect of low cost, high wear resistance, and improved wear resistance
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preparation example Construction
[0050] The preparation process of component two is as follows:
[0051] First prepare mesoporous silica particles, the specific process is as follows:
[0052] 1) Add 30-60% cetyltrimethylammonium bromide into the container by mass percentage, then add distilled water, heat to 40-60°C to dissolve cetyltrimethylammonium bromide Finally, add 1 to 20% regulator while stirring;
[0053] 2) After stirring for 10 minutes, add 5-20% ethyl orthosilicate, 4-30% sodium silicate and 5-30% pore-enlarging agent and stir, and react at a constant temperature of 40-60°C for 24-36 hours;
[0054] 3) Stand at room temperature for 6-8 days, filter, and dry at 110°C for 1-4 hours to obtain a white powder that is mesoporous silica particles;
[0055] Then use the second component prepared by mesoporous silica particles, the specific process is as follows:
[0056] Add mesoporous silica particles into water, disperse evenly by ultrasonic, then add antifouling ingredients and keep stirring for 2-...
Embodiment 1
[0066] Hydrophobically modified antifouling agent-releasing antifouling coatings were prepared according to the following steps:
[0067] The preparation process of component one is as follows:
[0068] 1) In terms of mass percentage, 3% polytetramethylene ether glycol (PTMG) and 65% polyether polyol polyethylene glycol (PEG) are added to a three-necked flask (500ml) equipped with a thermometer and a stirrer. ), heated to 100°C, and vacuum dehydrated at 0.667kPa for 4h;
[0069] 2) Cool down to 65°C, add 4% of 4,4'-diphenylmethane diisocyanate (MDI) and 4% of bisphenol A epoxy resin;
[0070] 3) After reacting for 30 minutes, add 20% 1,4-butanediol for chain extension;
[0071] 4) After reacting for 1 hour, add 4% PU defoaming agent and stir rapidly. After the air bubbles are eliminated, stop the reaction to obtain component one.
[0072] The preparation process of component two is as follows:
[0073] First prepare mesoporous silica particles loaded with antifouling compo...
Embodiment 2
[0081] The preparation process of component one is as follows:
[0082] 1) In terms of mass percentage, 4% polytetramethylene ether glycol (PTMG) and 15% polyether polyol polyethylene glycol (PEG) are added to a three-necked flask (500ml) equipped with a thermometer and a stirrer. ), heated to 105°C, and vacuum dehydrated at 0.667kPa for 3h;
[0083] 2) Cool down to 65°C, add 10% 4,4'-diphenylmethane diisocyanate (MDI) and 60% bisphenol A epoxy resin;
[0084] 3) After reacting for 40 minutes, add 1% 1,4-butanediol for chain extension;
[0085] 4) After reacting for 2 hours, add 10% PU defoaming agent and stir rapidly. After the bubbles are eliminated, stop the reaction to obtain component one.
[0086] The preparation process of component two is as follows:
[0087] First prepare mesoporous silica particles, the process is as follows:
[0088] (1) In terms of mass percentage, add 40% cetyltrimethylammonium bromide into the container, then add distilled water, heat at 50°C...
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