IP Library Granted Patent US 8,852,458
Granted Patent B2
US 8,852,458 · App. 12/747,772 · Granted Oct 7, 2014

Glycidyl carbamate coatings having improved corrosion resistance

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Quick Facts
Patent No.
US 8,852,458
App. No.
12/747,772
Granted
Oct 7, 2014
Kind
B2
Abstract

This invention relates to coating compositions comprising a glycidyl carbamate functional resin, an epoxy resin, and an amine curing agent. The coating compositions have improved corrosion resistance, particularly on untreated steel substrates.

Claims (38)

1. A liquid coating composition having improved corrosion-resistant properties, comprising a blend of

an aliphatic glycidyl carbamate resin having greater than two glycidyl carbamate groups,

at least one epoxy resin and

at least one amine curing agent soluble in the coating composition.

2. The coating composition of claim 1 , wherein the epoxy resin is aromatic.

3. The coating composition of claim 2 , wherein the epoxy resin contains at least two epoxy groups.

4. The coating composition of claim 3 , wherein the epoxy resin is a bis phenol diglycidyl ether.

5. The coating composition of claim 1 , wherein the blend of glycidyl carbamate resin:epoxy resin ranges from about 9:1 to about 1:9.

6. The coating composition of claim 1 , wherein the blend of glycidyl carbamate resin:epoxy resin ranges from about 2:3 to about 3:2.

7. The coating composition of claim 1 , wherein the amine curing agent is selected from the group consisting of PACM (bis(para-aminocyclohexyl)methane), diethylene triamine (DETA), 4,4′-methylene dianiline (MDA), Ancamide 2353, Ancamide 2050, Ancamide 805, Jeffamine D-400, and combinations thereof.

8. The coating composition of claim 1 , wherein glycidyl carbamate resin is a compound selected from formula (I), (II), (III), or (IV):

wherein R is independently an optionally substituted, divalent C 1 -C 15 alkyl, an optionally substituted divalent C 3 -C 15 cycloalkyl, or a divalent substituent selected from the group consisting of

X represents either the glycidyl group:

or an alkyl group based on an alcohol, represented as:

wherein at least two of the X moieties are represented by the glycidyl group;

n ranges from 0-50;

m ranges from 1-15; and

R 1 is independently an optionally substituted C 1 -C 22 alkyl.

9. The coating composition of claim 8 , wherein, for compounds of formulas (I), (II), (III) and (IV), R is a divalent C 3 -C 8 alkyl.

10. The coating composition of claim 9 , wherein X is:

11. The coating composition of claim 10 , wherein, R is —(CH 2 )O—.

12. The coating composition of claim 8 , wherein n ranges from 0-10.

13. The coating composition of claim 12 , wherein n ranges from 1-5.

14. The coating composition of claim 13 , wherein R 1 is a C 1 -C 6 alkyl.

15. The coating composition of claim 14 , wherein R is —(CH 2 ) 6 — and R 1 is a C 1 -C 3 alkyl.

16. The coating composition of claim 12 , wherein n is 0.

17. The coating composition of claim 16 , wherein R 1 is a C 3 -C 10 alkyl.

18. The coating composition of claim 17 , wherein R is —(CH 2 ) 6 — and R 1 is a C 4 -C 8 alkyl.

19. The coating composition of claim 8 , wherein the glycidyl carbamate compound is represented by formula (I) or (II).

20. The coating composition of claim 8 , wherein the glycidyl carbamate compound is represented by formula (IV).

21. The coating composition of claim 20 , wherein m ranges from 1-4.

22. A method of preparing a liquid coating composition having corrosion-resistant properties, comprising:

blending an aliphatic glycidyl carbamate resin having greater than two glycidyl carbamate groups with at least one epoxy resin and at least one amine curing agent which is soluble in the coating composition.

23. A method of coating a substrate with a corrosion-resistant composition, comprising the step of applying a liquid coating composition to a substrate, wherein the coating composition comprises an aliphatic glycidyl carbamate resin having greater than two glycidyl carbamate groups blended with at least one epoxy resin and at least one amine curing agent soluble in the coating composition.

24. The method of claim 23 , wherein the substrate is a steel substrate.

25. The method of claim 23 , wherein the substrate exhibits corrosion resistance after 240 hours or more of exposure to salt spray testing in accordance with ASTM B117.

26. The method of claim 25 , wherein the substrate exhibits corrosion resistance after 480 hours or more of exposure to salt spray testing.

27. The method of claim 26 , wherein the substrate exhibits corrosion resistance after 1080 hours or more of exposure to salt spray testing.

Assignments (3)
SECURITY INTEREST Recorded Mar 4, 2021
From: LUNA INNOVATIONS INCORPORATED; FORMER LUNA SUBSIDIARY, INC.; GENERAL PHOTONICS CORP.
To: PNC BANK, NATIONAL ASSOCIATION
Reel/Frame 056455/0331 →
CONFIRMATORY LICENSE Recorded Oct 21, 2014
From: NORTH DAKOTA STATE UNIVERSITY/LUNA INNOVATIONS, INC.
To: THE GOVERNMENT OF THE UNITED STATES OF AMERICA AS REPRESENTED BY THE SECRETARY OF THE NAVY
Reel/Frame 034026/0759 →
CONFIRMATORY LICENSE Recorded Jun 29, 2010
From: NORTH DAKOTA STATE UNIVERSITY/LUNA INNOVATIONS, INC
To: THE GOVERNMENT OF THE UNITED STATES OF AMERICA AS REPRESENTED BY THE SECRETARY OF THE NAVY
Reel/Frame 024607/0353 →