A kind of self-healing anticorrosion coating and preparation method thereof
An anti-corrosion coating and self-repairing technology, applied in the field of anti-corrosion coatings, can solve the problems of insufficient anti-corrosion performance and mechanical properties, and achieve the effects of improved anti-corrosion performance, good flexibility, and reduced penetration
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Embodiment 1
[0041] In the first component of embodiment 1: the epoxy resin is 6101 epoxy resin (the trade mark is E44), and the solvent is xylene and n-butanol; the dispersant is EFKA-4310; the thixotropic agent is 140# organic bentonite and Ultra polyamide wax The filler is talcum powder, precipitated barium sulfate, barite powder, mica powder, sericite powder, aluminum tripolyphosphate, feldspar powder. ; In the second component: the curing agent is BS805 curing agent; the solvent is xylene and n-butanol, wherein the weight ratio of the first component and the second component is 6:1;
Embodiment 2
[0042] In the first component of embodiment 2: the epoxy resin is 618 epoxy resin (the trade mark is E51), and the solvent is xylene and cyclohexanone; the dispersant is BYK-220s; the thixotropic agent is 140# bentonite; the filler is talcum powder , precipitated barium sulfate, barite powder, mica powder, sericite powder, mica iron oxide, feldspar powder; in component B: curing agent is MD2015 cashew nut shell oil phenalkamine curing agent; solvent is xylene, component A and The weight ratio of component B is 3:1;
Embodiment 3
[0043] In the first component of embodiment 3: the epoxy resin is a blend of 6101 epoxy resin and 618 epoxy resin, the solvent is xylene and n-butanol; the dispersant is BYK-110; the thixotropic agent is 140# organic bentonite and Ultra Polyamide wax; fillers are talcum powder, precipitated barium sulfate, barite powder, ferrophosphorus powder, mica iron oxide, feldspar powder; in component B: curing agent is BS8328 polyamide curing agent and KDX2015 cashew nut shell oil phenalkamine curing The solvent is xylene; the weight ratio of component A to component B is 4:1.
[0044] In each embodiment, the corrosion inhibitor microcapsules are prepared by the following preparation method:
[0045]Step 1: Take 0.2g sodium lauryl sulfate, 15g barium petroleum sulfonate, and 0.8g n-hexadecane, disperse them in 80mL water, and ultrasonicate for 5-10min to form an oil-in-water emulsion;
[0046] Step 2: Add 5g acrylic acid solution to the prepared oil-in-water emulsion in step 1, 0.02g i...
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