IP Library Patent Application 14717473
Patent Application
App. No. 14/717,473

NON-AQUEOUS SOLVENT COMPOSITION AND ITS USE AS BARRIER LIQUID

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Patent No.
US None
App. No.
14/717,473
Abstract

A non-aqueous solvent composition comprising 0 to 10 wt. % of N-alkyl pyrrolidone, 0 to 5 wt. % of dimethyl sulfoxide, 10 to 50 wt. % of γ-butyrolactone, 10 to 50 wt. % of at least one monoalcohol, 10 to 60 wt. % of at least one organic solvent inert towards isocyanate groups, other than γ-butyrolactone, other than N-alkyl pyrrolidone, and consisting of carbon, hydrogen, oxygen and, optionally, nitrogen, and 0 to 10 wt. % of at least one additive. The non-aqueous solvent composition can be used as barrier liquid within a coating installation of an industrial mass production coating line for the application of water-borne two-component polyurethane coatings.

Claims (39)

1 . A method of operating a coating installation of an industrial mass production coating line, wherein the method comprises:

providing the coating installation comprising a release valve for a non-aqueous hardener component; and

filling the coating installation downstream of the non-aqueous hardener release valve with a non-aqueous solvent composition comprising:

0 to 10 wt. % of N-alkyl pyrrolidone,

0 to 5 wt. % of dimethyl sulfoxide,

10 to 50 wt. % of γ-butyrolactone,

10 to 50 wt. % of at least one monoalcohol,

10 to 60 wt. % of at least one organic solvent inert towards isocyanate groups, other than γ-butyrolactone, other than N-alkyl pyrrolidone, and consisting of carbon, hydrogen, and oxygen and, optionally, nitrogen, and

0 to 10 wt. % of at least one additive.

2 . The method of claim 1 , wherein filling the coating installation downstream of the non-aqueous hardener release valve comprises entirely filling the coating installation downstream of the non-aqueous hardener release valve with the non-aqueous solvent composition.

3 . The method of claim 1 , wherein the coating installation further comprises a mixer and a connection between the non-aqueous hardener release valve and an entrance of the mixer, and wherein filling the coating installation downstream of the non-aqueous hardener release valve comprises filling the connection between the non-aqueous hardener release valve and the entrance of the mixer with the non-aqueous solvent composition.

4 . The method of claim 3 , wherein the coating installation further comprises storage tanks for an aqueous base component and the non-aqueous hardener component, circulation lines for the components from the respective storage tanks, and a connection between each circulating line and the mixer, wherein the connection between the circulating line for the non-aqueous hardener component and the mixer includes the non-aqueous hardener release valve, and wherein filling the coating installation downstream of the non-aqueous hardener release valve comprises filling the connection between the non-aqueous hardener release valve and the entrance of the mixer with the non-aqueous solvent composition.

5 . The method of claim 4 , wherein the coating installation further comprises spray-application devices and connecting pipework downstream of the non-aqueous hardener release valve, and wherein filling the coating installation downstream of the non-aqueous hardener release valve comprises filling the mixer, the spray-application devices, and connecting pipework with the non-aqueous solvent composition.

6 . The method of claim 1 , wherein the coating installation downstream of the non-aqueous hardener release valve is filled with the non-aqueous solvent composition wherein the at least one additive is selected from the group consisting of defoamers, wetting agents, and surfactants.

7 . The method of claim 1 , wherein the coating installation downstream of the non-aqueous hardener release valve is filled with the non-aqueous solvent composition wherein the γ-butyrolactone makes up 25 to 35 wt. % of the non-aqueous solvent composition.

8 . The method of claim 1 , wherein the coating installation downstream of the non-aqueous hardener release valve is filled with the non-aqueous solvent composition wherein the at least one monoalcohol makes up 25 to 35 wt. % of the non-aqueous solvent composition.

9 . The method of claim 1 , wherein the coating installation downstream of the non-aqueous hardener release valve is filled with the non-aqueous solvent composition wherein the at least one organic solvent inert towards isocyanate groups, other than γ-butyrolactone, other than N-alkyl pyrrolidone, and consisting of carbon, hydrogen, and oxygen makes up 25 to 35 wt. % of the non-aqueous solvent composition.

10 . The method of claim 1 , wherein the coating installation downstream of the non-aqueous hardener release valve is filled with the non-aqueous solvent composition comprising 25 to 35 wt. % of γ-butyrolactone, 25 to 35 wt. % of at least one monoalcohol, and 30 to 50 wt. % of at least one organic solvent inert towards isocyanate groups, other than γ-butyrolactone, and consisting of carbon, hydrogen and oxygen.

11 . The method of claim 1 , wherein the coating installation downstream of the non-aqueous hardener release valve is filled with the non-aqueous solvent composition wherein the monoalcohol is a C3-C8 monoalcohol.

12 . The method of claim 11 , wherein the coating installation downstream of the non-aqueous hardener release valve is filled with the non-aqueous solvent composition wherein the C3-C8 monoalcohol is a saturated C3-C8 monoalcohol.

13 . The method of claim 1 , wherein the coating installation downstream of the non-aqueous hardener release valve is filled with the non-aqueous solvent composition wherein the non-aqueous solvent composition is free of n-alkyl pyrrolidone.

14 . A method of operating a coating installation of an industrial mass production coating line, wherein the method comprises:

providing the coating installation comprising storage tanks for an aqueous base component and a non-aqueous hardener component, circulation lines for the components from the respective storage tanks, and a connection between each circulating line and a mixer, wherein the connection between the circulating line for the non-aqueous hardener component and the mixer includes a non-aqueous hardener release valve; and

filling the connection between the non-aqueous hardener release valve and the entrance of the mixer with a non-aqueous solvent composition comprising:

0 to 10 wt. % of N-alkyl pyrrolidone,

0 to 5 wt. % of dimethyl sulfoxide,

10 to 50 wt. % of γ-butyrolactone,

10 to 50 wt. % of at least one monoalcohol,

10 to 60 wt. % of at least one organic solvent inert towards isocyanate groups, other than γ-butyrolactone, other than N-alkyl pyrrolidone, and consisting of carbon, hydrogen, and oxygen and, optionally, nitrogen, and

0 to 10 wt. % of at least one additive.

15 . A method of operating a coating installation of an industrial mass production coating line, wherein the method comprises:

providing the coating installation comprising a release valve for a non-aqueous hardener component; and

filling the coating installation downstream of the non-aqueous hardener release valve with a non-aqueous solvent composition comprising:

0 to 5 wt. % of dimethyl sulfoxide,

25 to 35 wt. % of γ-butyrolactone,

25 to 35 wt. % of at least one saturated C3-C8 monoalcohol,

30 to 50 wt. % of at least one organic solvent inert towards isocyanate groups, other than γ-butyrolactone, other than N-alkyl pyrrolidone, and consisting of carbon, hydrogen, and oxygen and, optionally, nitrogen, and

0 to 10 wt. % of at least one additive.

wherein the non-aqueous solvent composition is free of N-alkyl pyrrolidone.

Assignments (2)
INTELLECTUAL PROPERTY SECURITY AGREEMENT SUPPLEMENT Recorded Aug 11, 2017
From: AXALTA COATINGS SYSTEMS IP CO. LLC
To: BARCLAYS BANK PLC, AS COLLATERAL AGENT
Reel/Frame 043532/0063 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 20, 2015
From: STOFFEL, PETRA; BRUNNER, MARCUS
To: AXALTA COATING SYSTEMS IP CO. LLC
Reel/Frame 035682/0247 →