[미국특허]
Coating compositions exhibiting corrosion resistance properties and related coated substrates
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
B32B-015/092
B32B-027/20
B32B-027/38
C08L-063/00
C08K-003/20
C09K-015/02
C09K-015/04
출원번호
US-0956542
(2007-12-14)
등록번호
US-8231970
(2012-07-31)
발명자
/ 주소
Walters, David N.
Schneider, John R.
출원인 / 주소
PPG Industries Ohio, Inc
대리인 / 주소
Meyers, Diane R.
인용정보
피인용 횟수 :
4인용 특허 :
54
초록▼
Coating compositions are disclosed that include corrosion resisting particles such that the coating composition can exhibit corrosion resistance properties. Also disclosed are substrates at least partially coated with a coating deposited from such a composition and multi-component composite coatings
Coating compositions are disclosed that include corrosion resisting particles such that the coating composition can exhibit corrosion resistance properties. Also disclosed are substrates at least partially coated with a coating deposited from such a composition and multi-component composite coatings, wherein at least one coating later is deposited from such a coating composition. Methods and apparatus for making ultrafine solid particles are also disclosed.
대표청구항▼
1. A method for enhancing the corrosion resistance of a substrate comprising aluminum, the method comprising coating at least a portion of the substrate with a composition comprising: (a) a thermosetting film-forming resin comprising a polyamine and an epoxy functional polymer; and(b) corrosion resi
1. A method for enhancing the corrosion resistance of a substrate comprising aluminum, the method comprising coating at least a portion of the substrate with a composition comprising: (a) a thermosetting film-forming resin comprising a polyamine and an epoxy functional polymer; and(b) corrosion resisting particles comprising magnesium oxide articles having a surface area of at least 10 square meters per gram, wherein the magnesium oxide particles have an average particle size of no more than 50 nanometers. 2. The method of claim 1, wherein the polyamine comprises a polyamide resin. 3. The method of claim 1, wherein the composition further comprises an adhesion promoting component comprising at least one of: (a) tannic acid, gallic acid, phosphoric acid, phosphorous acid, citric acid, malonic acid, a derivative thereof, or a mixture thereof;(b) a metal phosphate;(c) an organophosphate;(d) an organophosphonate; and(e) a phosphatized epoxy resin. 4. The method of claim 1, wherein the composition further comprises a phenolic resin. 5. The method of claim 1, wherein the composition further comprises an alkoxysilane. 6. The method of claim 5, wherein the alkoxysilane comprises an epoxy-functional silane. 7. The method of claim 1, wherein the substrate further comprises a chromate conversion coating. 8. The method of claim 1, wherein the composition further comprises at least one of an organophosphate; an organophosphonate; and a phosphatized epoxy resin. 9. The method of claim 1, wherein the magnesium oxide particles have a surface area of 30 to 500 square meters per gram. 10. A method for enhancing the corrosion resistance of a substrate comprising aluminum, the method comprising coating at least a portion of the substrate with a composition comprising: (a) a thermosetting film-forming resin comprising a polyamine and an epoxy functional polymer; and(b) corrosion resisting particles comprising magnesium oxide particles having a surface area of at least 10 square meters per gram and an average primary particle size of no more than 200 nanometers. 11. A method for enhancing the corrosion resistance of a substrate comprising aluminum, the method comprising coating at least a portion of the substrate with a composition comprising: (a) a thermosetting film-forming resin comprising a polyamine and an epoxy functional polymer; and(b) corrosion resisting particles comprising magnesium oxide particles having a surface area of at least 10 square meters per gram;wherein the substrate further comprises a chromate conversion coating. 12. A substrate comprising aluminum at least partially coated with a primer coating comprising: (a) a thermoset film-forming resin comprising a polyamine and an epoxy functional polymer; and(b) magnesium oxide particles having a surface area of at least 10 square meters per gram and an average particle size of no more than 50 nanometers;wherein the magnesium oxide particles are dispersed in the thermoset film-forming resin. 13. The substrate of claim 12, wherein the coating further comprises a phenolic resin and/or an alkoxysilane. 14. The substrate of claim 12, wherein the substrate is clad with pure aluminum or further comprises a chromate conversion coating. 15. The substrate of claim 12, wherein the coating further comprises an adhesion promotion component comprising at least one of: (a) tannic acid, gallic acid, phosphoric acid, phosphorous acid, citric acid, malonic acid, a derivative thereof, or a mixture thereof;(b) a metal phosphate;(c) an organophosphate;(d) an organophosphonate; and(e) a phosphatized epoxy resin. 16. The substrate of claim 12, wherein the coating further comprises an alkoxysilane. 17. The substrate of claim 16, wherein the alkoxysilane comprises an epoxy-functional silane. 18. The substrate of claim 12, wherein the substrate further comprises a chromate conversion coating. 19. The substrate of claim 12, wherein the composition further comprises at least one of an organophosphate; an organophosphonate; and a phosphatized epoxy resin. 20. The substrate of claim 12, wherein the magnesium oxide particles have a surface area of 30 to 500 square meters per gram. 21. A substrate comprising aluminum at least partially coated with a primer coating comprising: (a) a thermoset film-forming resin comprising a polyamine and an epoxy functional polymer;(b) magnesium oxide particles having a surface area of at least 10 square meters per gram and an average primary particle size of no more than 200 nanometers wherein the magnesium oxide particles are dispersed in the thermosetting film-forming resin. 22. A substrate comprising aluminum at least partially coated with a primer coating comprising: (a) a thermoset film-forming resin comprising a polyamine and an epoxy functional polymer; and(b) magnesium oxide particles having a surface area of at least 10 square meters per gram;wherein the magnesium oxide particles are dispersed in the thermoset film-forming resin; andwherein the substrate further comprises a chromate conversion coating. 23. A primer and/or pretreatment coating composition, comprising; (a) a polyacrylate, wherein the polyacrylate comprises a urethane acrylate;(b) a polythiol; and(c) corrosion resisting particles comprising magnesium oxide particles having a surface area of at least 10 square meters per gram, and an average particle size of no more than 50 nanometers. 24. The primer and/or pretreatment coating composition of claim 23, further comprising an adhesion promoting component comprising at least one of: (a) tannic acid, gallic acid, phosphoric acid, phosphorous acid, citric acid, malonic acid, a derivative thereof, or a mixture thereof;(b) a metal phosphate;(c) an organophosphate;(d) an organophosphonate; and(e) a phosphatized epoxy resin. 25. A substrate comprising aluminum at least partially coated with the composition of claim 23. 26. The substrate of claim 25, wherein the substrate is clad with pure aluminum or further comprises a chromate conversion coating. 27. The primer and/or pretreatment coating composition of claim 23, wherein the magnesium oxide particles have a surface area of 30 to 500 square meters per gram. 28. A primer and/or pretreatment coating composition comprising: (a) a polyacrylate, wherein the polyacrylate comprises a urethane acrylate;(b) a polythiol; and(c) corrosion resisting particles comprising magnesium oxide particles having a surface area of at least 10 square meters per gram and an average particle size of no more than 200 nanometers. 29. A primer and/or pretreatment coating composition comprising: (a) a polyacrylate, wherein the polyacrylate comprises a urethane acrylate;(b) a polythiol; and(c) corrosion resisting particles consisting of magnesium oxide particles having a surface area of at least 10 square meters per gram.
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