Claims
- 1. A coating composition comprising 10-80% by weight of binder and 20-90% by weight of an organic solvent; wherein the binder consists essentially of about
- (1) 35-90% by weight, based on the weight of the binder, of a chlorosulfonated polyethylene having a weight average molecular weight of about 75,000 to 300,000 determined by gel permeation chromatography and having a chlorine content of 20 to 50% by weight and a sulfur content of 0.7 to 2.0% by weight;
- (2) 7-60% by weight, based on the weight of the binder, of an epoxy resin;
- (3) 3-20% by weight, based on the weight of the binder, of a polyamine curing agent selected from the group consisting of ##STR9## where R is R.sub.1 NH.sub.2 and R.sup.1 is an aliphatic or cycloaliphatic radical; R.sup.2 is C or a hydrocarbon group, R.sup.3 is H or CH.sub.3, when x is 3 R.sup.2 is a hydrocarbon group and when x is 4 R.sup.2 is C;
- wherein the coating composition contains electrically conductive pigments in a pigment to binder weight ratio of about 50/100 to 300/100 and a dry film of the coating composition 25 microns thick has an electrical resistance of about 1-50 ohms.
- 2. The coating composition of claim 1 in which the electrically conductive pigments are a mixture of carbon black pigment and finely divided graphite.
- 3. The coating composition of claim 2 in which the chlorosulfonated polyethylene has the formula ##STR10## where m and n are positive integers of about 5-25 and has a weight average molecular weight of about 100,000 to 150,000.
- 4. The coating composition of claim 3 in which the epoxy resin has the formula ##STR11## where R.sup.4 is an aromatic radical and b is a positive integer of about 0.5 to 4.
- 5. The coating composition of claim 4 in which R.sup.4 is ##STR12##
- 6. The coating composition of claim 3 in which the epoxy resin is an epoxy novolac resin of the formula ##STR13## where d is a positive integer of about 0.2-2.
- 7. The coating composition of claim 5 in which the polyamine curing agent is ##STR14## where R is R.sup.1 NH.sub.2 and R.sup.1 is an aliphatic or cycloaliphatic radical.
- 8. The coating composition of claim 7 in which R is ##STR15##
- 9. The coating composition of claim 3 containing about 0.1-3% by weight, based on the weight of the binder, of a bicyclic amidine.
- 10. The coating composition of claim 9 in which the bicyclic amidine is 1,8-diaza-bicyclo-(5,4,0)undecene-7.
- 11. The coating composition of claim 3 containing about 0.1-3% by weight, based on the weight of the binder of a strong organic base.
- 12. The coating composition of claim 11 in which the strong organic base is a tertiary alkyl ammonium hydroxide or a tertiary alkyl ammonium methoxide.
- 13. The coating composition of claim 1 in which the binder consists essentially of about
- (1) 40-85% by weight, based on the weight of the binder, of a chlorosulfonated polyethylene having the formula ##STR16## where m and n are positive integers of about 5-25 and has a weight average molecular weight of about 100,000 to 150,000;
- (2) 9-44% by weight, based on the weight of the binder, of an epoxy resin of the formula ##STR17## where b is a positive integer of about 0.5 to 4; (3) 3-20% by weight, based on the weight of the binder, of a polyamine curing agent of the formula ##STR18## where R is ##STR19## (4) 0.1-3% by weight of 1,8-diaza-bicyclo(5,4,0)-undecene-7 and wherein the electrically conductive pigments comprise a mixture of carbon black pigment and finely divided graphite and a dry film of the coating has an electrical resistance of 5-20 ohms.
- 14. A coating composition comprising 10-80% by weight of binder and 20-90% by weight of an organic solvent; wherein the binder consists essentially of about
- (1) 35-90% by weight, based on the weight of the binder, of chlorosulfonated polyethylene having a weight average molecular weight of about 75,000 to 300,000 determined by gel permeation chromatography and having a chlorine content of 20 to 50% by weight and a sulfur content of 0.7 to 2.0% by weight;
- (2) 7-60% by weight, based on the weight of the binder, of an epoxy resin;
- (3) 3-20% by weight, based on the weight of the binder, of a polyamine curing agent selected from the group consisting of ##STR20## where R is R.sup.1 NH.sub.2 and R.sup.1 is an aliphatic or cycloaliphatic radical, R.sup.2 is C or a hydrocarbon group, R.sup.3 is H or CH.sub.3 when x is 3, R.sup.2 is a hydrocarbon group and when x is r R.sup.2 is C.
- 15. The coating composition of claim 14 in which the polyamine curing agent is ##STR21##
- 16. The coating composition of claim 15 in which R is ##STR22##
- 17. The coating composition of claim 14 containing about 0.1-3% by weight, based on the weight of the binder, of a strong organic base.
- 18. The coating composition of claim 17 in which the strong organic base is a teriary alkyl ammonium hydroxide or a tertiary alkyl ammonium methoxide.
- 19. A coating composition comprising 10-80% by weight of binder and 20-90% by weight of an organic solvent; wherein the binder consists essentially of about
- (1) 35-90% by weight, based on the weight of the binder, of a chlorosulfonated polyethylene having a weight average molecular weight of about 75,000 to 300,000 determined by gel permeation chromatography and having a chlorine content of 20 to 50% by weight and a sulfur content of 0.7 to 2.0% by weight;
- (2) 7-60% by weight, based on the weight of the binder, of an epoxy resin;
- (3) 3-20% by weight, based on the weight of the binder, of a lead compound curing agent;
- wherein the coating composition contains electrically conductive pigments in a pigment to binder weight ratio of about 50/100 to 300/100 and a dry film of the coating composition 25 microns thick has an electrical resistance of about 1-50 ohms.
- 20. The coating composition of claim 19 in which the lead compound curing agent is lead oxide.
- 21. A process for coating lead alloy grids used lead-acid electric storage batteries which comprises
- (1) applying a thin coating of an amino silane to the grid and
- (2) applying a coating of the composition of claim 1 and drying the composition to provide a film about 10-200 microns thick.
- 22. The process of claim 21 in which the lead alloy grid is of an antimony lead alloy or a calcium lead alloy.
- 23. The process of claim 22 in which the amino silane is gamma aminopropyl trimethoxy silane.
- 24. A lead alloy battery grid having a coating of the composition of claim 1.
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of Ser. No. 578,031 filed Feb. 2, 1984, now U.S. Pat. No. 4,513,060.
US Referenced Citations (8)
Foreign Referenced Citations (6)
Number |
Date |
Country |
410370 |
Feb 1971 |
AUX |
2152237 |
Oct 1972 |
DEX |
1301717 |
Jul 1962 |
FRX |
785607 |
Dec 1972 |
FRX |
1268154 |
Mar 1972 |
GBX |
2112338 |
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GBX |
Non-Patent Literature Citations (4)
Entry |
Encyclopedia of Chemical Technology 3rd Edition, 1979, Kirkothmer vol. 3, pp. 640-663. |
Fluorad.RTM. Coating Additives; Technical Bulletin--Commercial Chemicals Division; 3M Company. |
Chlorosulfonated Polyethylene--A New Binder for use in Paints; 1958 Kelly et al.; Reprint--Federation of Paint & Varnish Prd. Clubs Digest. |
Coatings of Hypalon.RTM. 20 Synthetic Rubber; Roche; Elastomers Div., Du Pont Co., 1956. |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
578031 |
Feb 1984 |
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