[summary of the invention]
The objective of the invention is at deficiency of the prior art, a kind of novel protection against corrosion priming paint epoxy modified resin is provided.
One purpose more of the present invention is that the preparation method of a kind of novel protection against corrosion priming paint with epoxy modified resin is provided.
For achieving the above object, the technical scheme that the present invention takes is: a kind of novel protection against corrosion priming paint epoxy modified resin, described epoxy modified resin adopts single stage method to be polymerized under the effect of catalyzer by polyvalent alcohol, polyprotonic acid, Resins, epoxy, then with solvent to rare, make by following component by weight percentage:
Polyol blends 20-35%
Polyprotonic acid mixture 15-20%
Epoxy resin composition 15-20%
Catalytic organism agent 0.2-0.3%
Solvent 44.7-54.8%.
The component of described Resins, epoxy and weight percent content are:
E-03 Resins, epoxy 15-50%
E-12 Resins, epoxy 15-80%
E-44 Resins, epoxy 15-50%.
The component of described polyol blends and weight percent content are:
Tetramethylolmethane 50-75%
TriMethylolPropane(TMP) 5-25%
Glycerine 7-25%.
The component of described polyprotonic acid mixture and weight percent content are:
Hexanodioic acid 2-10%
Unsaturated fatty acids 40-60%
M-phthalic acid 3-10%
Terephthalic acid 0-15%
Phthalic anhydride 10-15%.
Described solvent component and weight percent content are:
Dimethylbenzene 10-25%
The heavy aromatic solvent 50-70% that contains C9-C10
Butyl glycol ether 5-10%.
Described organotin catalysts is selected from dibutyl tin laurate, a kind of in dimethyl oxalic acid tin or the dibutyl tin acetate.
For realizing above-mentioned second purpose, the technical scheme that the present invention takes is: a kind of novel protection against corrosion priming paint preparation method of epoxy modified resin, adopt one-step synthesis process, with the polyprotonic acid mixture, polyol blends, epoxy resin composition are heated to 150-200 ℃, add organotin catalysts again, continue to be heated to 210-230 ℃, reaction times 5-10 hour, then with solvent to rare to solids content 45-55%.
Adopt one-step synthesis process, with polyprotonic acid mixture, polyol blends, epoxy resin composition is heated to 160-190 ℃, adds organotin catalysts again, continues to be heated to 210-230 ℃, reaction times 7-9 hour, then with solvent to rare to solids content 45-55%.
Adopt one-step synthesis process, with the polyprotonic acid mixture, polyol blends, epoxy resin composition are heated to 180 ℃, add organotin catalysts again, continue to be heated to 210-230 ℃, 8 hours reaction times, then with solvent to rare to solids content 45-55%.
The invention has the advantages that:
1, epoxy modified resin of the present invention to metal base have excellent adhesive attraction, dryness is good, the paint film that crosslinked back generates is tough and tensile;
2, because hydroxyl value reaches 120-160mgKOH/g, cross-linking density is higher, has excellent flexibility, hardness and chemical-resistant, and it is supporting to be easy to topcoat of all kinds, effectively improve lasting antirust corrosion resistance, overcome the defective of hardness of film in the background technology, dryness and preservative property difference.
[embodiment]
Below in conjunction with form embodiment provided by the invention is elaborated.
Embodiment 1
With 2.80 kilograms glycerine (100%), 2.11 the TriMethylolPropane(TMP) of kilogram, 5.25 the tetramethylolmethane of kilogram, 4.21 the E-44 Resins, epoxy of kilogram, 6.94 the E-12 Resins, epoxy of kilogram, 2.86 the adipic acid of kilogram, 7.26 the Tetra hydro Phthalic anhydride of kilogram, 1.98 the m-phthalic acid of kilogram, 18.23 the unsaturated fatty acids of kilogram, 6.8 the dimethylbenzene of kilogram adds reactor, slowly be heated to 180 ℃, treat to add 1.6 kilograms of dimethyl oxalic acid tin catalysts after the fusion, continue progressively to be heated to 210-230 ℃, reaction times was controlled at 8 hours, final reaction reaches acid number 10.0mgKOH/g, viscosity 15 seconds, 3.02 kilograms of aquifer yields, use 26.8 kilopond aromatic solvents (C9-C10) then, 6 kg ethylene glycol butyl ether to rare to solids content 55%, filter packing.
Performance test such as following table 1:
Table 1
Project |
Test result |
Quality solids content (%) |
55 |
Viscosity (second) |
15.5 |
Acid number (mg KOH/g) |
9.8 |
Molecular weight |
61000 |
Hydroxyl value (mg KOH/g) |
150 |
Embodiment 2
With 1.81 kilograms glycerine (100%), 1.63 the TriMethylolPropane(TMP) of kilogram, 4.98 the tetramethylolmethane of kilogram, 4.21 the E-44 Resins, epoxy of kilogram, 5.21 the E-03 Resins, epoxy of kilogram, 8.98 the Tetra hydro Phthalic anhydride of kilogram, 19.32 the unsaturated fatty acids of kilogram, 6.8 the dimethylbenzene of kilogram adds reactor, slowly be heated to 180 ℃, treat to add 1.0 kilograms of dibutyl tin acetate catalyzer after the fusion, continue progressively to be heated to 220 ℃, reaction times was controlled at 7 hours, final reaction reaches acid number 11mgKOH/g, viscosity 21 seconds, 2.2 kilograms of aquifer yields, use 28 kilopond aromatic solvents (C9-C10) then, 8 kg ethylene glycol butyl ether to rare to solids content 50%, filter packing.
Performance test such as following table 2:
Table 2
Project |
Test result |
Quality solids content (%) |
50 |
Viscosity (second) |
21.5 |
Acid number (mg KOH/g) |
10.8 |
Molecular weight |
70000 |
Hydroxyl value (mg KOH/g) |
130 |
Embodiment 3
With 2.35 kilograms glycerine (100%), 1.63 the TriMethylolPropane(TMP) of kilogram, 6.57 the tetramethylolmethane of kilogram, 6.54 the E-12 Resins, epoxy of kilogram, 3.21 the E-03 Resins, epoxy of kilogram, 8.21 the Tetra hydro Phthalic anhydride of kilogram, 3.21 the m-phthalic acid of kilogram, 20.62 the unsaturated fatty acids of kilogram, 6.8 the dimethylbenzene of kilogram adds reactor, slowly be heated to 170 ℃, treat to add 1.1 kilograms of dibutyltin dilaurate catalysts after the fusion, continue to be heated to 210 ℃, reaction times was controlled at 8 hours, final reaction reaches acid number 11mgKOH/g, viscosity 25 seconds, 2.89 kilograms of aquifer yields, use 41.4 kilopond aromatic solvents (C9-C10) then, 12.2 the kg ethylene glycol butyl ether to rare to solids content 45%, filter packing.
Performance test such as following table 3:
Table 3
Project |
Test result |
Quality solids content (%) |
45 |
Viscosity (second) |
27 |
Acid number (mg KOH/g) |
10.9 |
Molecular weight |
98000 |
Hydroxyl value (mg KOH/g) |
144 |
Embodiment 4
With 2.50 kilograms glycerine (100%), 1.63 the TriMethylolPropane(TMP) of kilogram, 6.51 the tetramethylolmethane of kilogram, 4.21 the E-03 Resins, epoxy of kilogram, 6.54 the E-12 Resins, epoxy of kilogram, 7.26 the Tetra hydro Phthalic anhydride of kilogram, 1.98 the m-phthalic acid of kilogram, 19.32 the unsaturated fatty acids of kilogram, 6.8 the dimethylbenzene of kilogram adds reactor, slowly be heated to 190 ℃, treat to add 1.6 kilograms of dimethyl oxalic acid tin catalysts after the fusion, continue progressively to be heated to 230 ℃, reaction times was controlled at 5 hours, final reaction reaches acid number 10.0mgKOH/g, viscosity 25 seconds, 3.02 kilograms of aquifer yields, use 26.8 kilopond aromatic solvents (C9-C10) then, 6 kg ethylene glycol butyl ether to rare to solids content 55%, filter packing.
Performance test such as following table 4:
Table 4
Project |
Test result |
Quality solids content (%) |
55 |
Viscosity (second) |
25 |
Acid number (mg KOH/g) |
10.6 |
Molecular weight |
65000 |
Hydroxyl value (mg KOH/g) |
140 |
Embodiment 5
With 2.35 kilograms glycerine (100%), 1.63 the TriMethylolPropane(TMP) of kilogram, 6.57 the tetramethylolmethane of kilogram, 6.54 the E-12 Resins, epoxy of kilogram, 3.21 the E-03 Resins, epoxy of kilogram, 8.21 the Tetra hydro Phthalic anhydride of kilogram, 3.21 the m-phthalic acid of kilogram, 20.62 the unsaturated fatty acids of kilogram, 6.8 the dimethylbenzene of kilogram adds reactor, slowly be heated to 150 ℃, treat to add 1.1 kilograms of dibutyltin dilaurate catalysts after the fusion, continue to be heated to 210 ℃, reaction times was controlled at 9 hours, final reaction reaches acid number 11mgKOH/g, viscosity 25 seconds, 2.89 kilograms of aquifer yields, use 40.4 kilopond aromatic solvents (C9-C10) then, 12.2 the kg ethylene glycol butyl ether to rare to solids content 50%, filter packing.
Performance test such as following table 5:
Table 5
Project |
Test result |
Quality solids content (%) |
50 |
Viscosity (second) |
24 |
Acid number (mg KOH/g) |
10.7 |
Molecular weight |
80000 |
Hydroxyl value (mg KOH/g) |
135 |
Embodiment 6
With 2.20 kilograms glycerine (100%), 1.59 the TriMethylolPropane(TMP) of kilogram, 6.60 the tetramethylolmethane of kilogram, 6.54 the E-12 Resins, epoxy of kilogram, 3.21 the E-03 Resins, epoxy of kilogram, 8.21 the Tetra hydro Phthalic anhydride of kilogram, 3.21 the m-phthalic acid of kilogram, 20.62 the unsaturated fatty acids of kilogram, 6.8 the dimethylbenzene of kilogram adds reactor, slowly be heated to 200 ℃, treat to add 1.2 kilograms of dibutyltin dilaurate catalysts after the fusion, continue to be heated to 230 ℃, reaction times was controlled at 10 hours, final reaction reaches acid number 10mg KOH/g, viscosity 25 seconds, 2.89 kilograms of aquifer yields, use 41.4 kilopond aromatic solvents (C9-C10) then, 12.2 the kg ethylene glycol butyl ether to rare to solids content 55%, filter packing.
Performance test such as following table 6:
Table 6
Project |
Test result |
Quality solids content (%) |
55 |
Viscosity (second) |
27 |
Acid number (mg KOH/g) |
10.9 |
Molecular weight |
96000 |
Hydroxyl value (mg KOH/g) |
150 |
The above only is a preferred implementation of the present invention; should be pointed out that for those skilled in the art, under the prerequisite that does not break away from the inventive method; can also make some improvement and replenish, these improvement and replenish and also should be considered as protection scope of the present invention.