IP Library › Granted Patent US 10,060,039
Granted Patent B2
US 10,060,039 · App. 14/421,110 · Granted Aug 28, 2018

Anti-corrosive zinc primer coating compositions comprising hollow glass spheres and a conductive pigment

Inventors: Salvador Colominas Tutusaus (Polinyà, ES); Santiago Arias Codolar (Barcelona, ES); Torben Schandel (Kgs. Lyngby, DK); Tomás Alhambra Redondo (Polinyà, ES); Andreas Lundtang Paulsen (Vanløse, DK)
Assignee: HEMPEL A/S
C23F13/14B65D81/32C08K3/04C08K7/28C09D5/084C09D5/106C09D5/24C09D7/70C08K2003/0893Y10T428/249974
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Quick Facts
Patent No.
US 10,060,039
App. No.
14/421,110
Granted
Aug 28, 2018
Kind
B2
Abstract

The present invention concerns anti-corrosive coating compositions, in particular coating compositions for protecting iron and steel structures. In particular, the present invention relates to coating compositions comprising particulate zinc, conductive pigments, and hollow glass microspheres, e.g. epoxy based coatings. The invention furthermore concerns a kit of parts containing the composition, a method for its application, as well as metal structures coated with the composition.

Claims (24)

1. A coating composition comprising:

a) a binder system selected from the group consisting of epoxy-based binder systems comprising one or more curing agents selected from compounds or polymers comprising at least two reactive hydrogen atoms linked to nitrogen, polysiloxane-based binder systems, polyurethane-based binder systems, cyclized rubber-based binder systems, and phenoxy resin-based binder systems,

b) zinc particles,

c) non-coated hollow glass microspheres, and

d) a conductive pigment consisting of graphite in an amount of 0.1 to 3.8% by weight, carbon black, aluminium pigments, black iron oxide, antimony-doped tin oxide, mica coated with antimony-doped tin oxide, indium tin oxide, carbon nanotubes, carbon black fibres, graphene, or any mixture thereof,

wherein the composition further comprises a solvent.

2. The coating composition according to claim 1 , wherein the conductive pigment is selected from the group consisting of carbon black, carbon nanotubes, graphite, and any mixture thereof.

3. The coating composition according to claim 2 , wherein the conductive pigment is graphite.

4. The coating composition according to claim 2 , wherein the conductive pigment is carbon black.

5. The coating composition according claim 1 , wherein said binder system is an epoxy-based binder system, a polyurethane-based binder system, or a polysiloxane-based binder system.

6. The coating composition according to claim 1 , wherein said binder system is an epoxy-based binder system or a polysiloxane-based binder system.

7. The coating composition according to claim 1 , wherein said binder system is an epoxy-based binder system.

8. The coating composition according to claim 1 , wherein the conductive pigment is present in an amount of between about 0.5 to 5.0% by solids volume of the coating composition.

9. The coating composition according to claim 1 , wherein the conductive pigment is graphite present in an amount of less than 3.5% by weight of the total composition.

10. The coating composition according to claim 1 , wherein the hollow glass microspheres are present in an amount of less than 5.9% by weight of the composition.

11. The coating composition according to claim 1 , wherein the hollow glass microspheres are present in an amount of between about 10 and 30% by solids volume.

12. The coating composition according to claim 1 , wherein the hollow glass microsphere have a true density of about 0.05 to 0.75 g/cc.

13. The coating composition according to claim 1 , comprising one or more curing agents.

14. The coating composition according to claim 1 , wherein the graphite is present in an amount of 0.5-3.5% by weight based on the coating composition.

15. A kit of parts containing a coating composition, as defined in claim 13 , comprising two or more containers, wherein one container contains one or more curing agents and another container contains a binder system in the absence of a curing agent, wherein the binder system is selected from the group consisting of epoxy-based binder systems, polysiloxane-based binder systems, polyurethane-based binder systems, cyclized rubber-based binder systems, and phenoxy resin-based binder systems.

16. The kit of parts according to claim 15 , wherein the zinc particles and hollow glass microspheres are contained in the same container as a binder system selected from the group consisting of epoxy-based binder systems, polysiloxane-based binder systems, polyurethane-based binder systems, cyclized rubber-based binder systems, and phenoxy resin-based binder systems, and wherein a conductive pigment selected from the group consisting of graphene, graphite, carbon black, aluminium pigments, black iron oxide, antimony-doped tin oxide, mica coated with antimony-doped tin oxide, indium tin oxide, carbon nanotubes, carbon black fibres, and any mixture thereof is contained in the same container as the one or more curing agents.

17. A coated structure comprising a metal structure having a coating of the coating composition as defined in claim 1 applied onto at least a part of the metal structure.

18. A method of coating a metal structure, comprising:

applying a layer of a coating composition as defined in claim 1 to at least a part of the metal structure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 16, 2015
From: COLOMINAS TUTUSAUS, SALVADOR; ARIAS CODOLAR, SANTIAGO; SCHANDEL, TORBEN; ALHAMBRA REDONDO, TOMÁS; PAULSEN, ANDREAS LUNDTANG
To: HEMPEL A/S
Reel/Frame 035430/0411 →
Priority Claims (1)
EP 12182173 · Aug 29, 2012 · regional
Continuity (1)
Related Publication 20150232998A1 · Aug 20, 2015