IP Library › Patent Application 15738683
Patent Application
App. No. 15/738,683

Coating Agent Composition for Producing Peelable and Chemically-Resistant Coatings

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
15/738,683
Abstract

The invention relates to peelable and chemically resistant coatings for metal and plastic substrates, and to the coating agent compositions required to produce same. The invention also relates to a process for producing such coatings and to the use of the coating agent compositions to protectively coat metal and plastic substrates in the field of aircraft construction.

Claims (51)

1 . A coating agent composition containing at least one binder component A and

at least one curing agent component B,

the binder component A containing

A1 at least one polyether polyol component of poly(oxyalkylene) glycol,

A2 at least one aromatic diamine,

A3 silicone elastomer particles and

A4 at least one polyurethane urea,

the curing agent component B containing

B1 at least one urethane-group-containing component containing unblocked isocyanate groups and

B2 at least one aromatic diisocyanate of methylene di(phenyl isocyanate),

wherein the curing agent component B has a content of unblocked isocyanate groups of from 10 to 30% by weight and

wherein the solids content of the coating agent composition is greater than 95% by weight.

2 . The coating agent composition according to claim 1 , wherein

component A1 is present in an amount of from 8 to 76% by weight,

component A2 is present in an amount of from 1 to 8% by weight,

component A3 is present in an amount of from 0.2 to 9% by weight,

component A4 is present in an amount of from 0.5 to 11% by weight, and

the curing agent component B is present in an amount of from 20 to 40% by weight,

in each case based on the total weight of the coating agent composition.

3 . The coating agent composition according to claim 1 , wherein the polyether polyol component A1 of poly(oxyalkylene glycol) contains at least one poly(oxyalkylene) glycol of ethylene oxide and/or propylene oxide.

4 . The coating agent composition according to claim 3 , wherein the polyether polyol component A1 comprises at least one propoxylated polyethylene glycol A1.1, at least one polypropylene glycol A1.2 and at least one propoxylated trimethylolpropane A1.3.

5 . The coating agent composition according to claim 1 , wherein the urethane-group-containing component B1 is the reaction product of a hydroxyl-group-containing component B1.1 with an isocyanate component B1.2, wherein the hydroxyl-group-containing component B1.1 is a polyether polyol component of poly(oxyalkylene) glycol, the isocyanate component B1.2 is an aromatic diisocyanate of methylene di(phenyl isocyanate), and the ratio of the OH groups of component B1.1 to the NCO groups of the isocyanate component B1.2 is in a range of from 1:1.05 to 1:2.05.

6 . The coating agent composition according to claim 1 , wherein the fraction of component B2, based on the curing agent component B, is from 40 to 60% by weight.

7 . The coating agent composition according to claim 1 , wherein the aromatic diamine A2 is a mononuclear aromatic compound, the aromatic diamine A2 is alkylated, and the amine groups are bonded directly to the aromatic compound.

8 . The coating agent composition according to claim 1 , wherein the silicone elastomer particles are core-shell particles which have a core containing cross-linked polysiloxane and a shell having the reactive groups.

9 . The coating agent composition according to claim 1 , wherein the solids content of the coating agent composition is greater than 97% by weight.

10 . The coating agent composition according to claim 1 , wherein it comprises low-alkali borosilicate glass in the form of hollow microspheres as filler.

11 . A process for producing a peelable coating film obtainable by applying a coating agent composition according to claim 1 to a metal substrate and/or plastic substrate with a wet film thickness of from 100 to 600 μm, in a one-coat spraying operation and then curing by chemical cross-linking in a temperature range of from 15 to 60° C.

12 . A process for chemically milling metal substrates, comprising i) producing a peelable coating film according to claim 11 which partially coats the metal substrate, wherein the partial coating with the peelable coating film is achieved either by previously covering regions that are not to be coated or by first applying to the substrate a peelable coating film which completely covers the substrate and which is subsequently partially removed, and ii) immersing the substrate partially coated with the peelable coating film in an alkaline or acidic chemical milling bath.

13 . (canceled)

14 . (canceled)

15 . A substrate made of one or more metals and/or plastic materials which is coated with a chemically cross-linked coating agent composition according to claim 1 or has been obtained by the process according to claim 11 .

16 . A substrate made of one or more metals and/or plastic materials obtained by the process according to claim 11 .

17 . The coating agent composition according to claim 1 , wherein the solids content of the coating agent composition is greater than 99% by weight.

18 . The process according to claim 11 , wherein

component A1 is present in an amount of from 8 to 76% by weight,

component A2 is present in an amount of from 1 to 8% by weight,

component A3 is present in an amount of from 0.2 to 9% by weight,

component A4 is present in an amount of from 0.5 to 11% by weight, and

the curing agent component B is present in an amount of from 20 to 40% by weight,

in each case based on the total weight of the coating agent composition.

19 . The process according to claim 11 , wherein

(i) the polyether polyol component A1 of poly(oxyalkylene glycol) contains at least one poly(oxyalkylene) glycol of ethylene oxide and/or propylene oxide;

(ii) the polyether polyol component A1 comprises at least one propoxylated polyethylene glycol A1.1, at least one polypropylene glycol A1.2 and at least one propoxylated trimethylolpropane A1.3; or

(iii) the aromatic diamine A2 is a mononuclear aromatic compound, the aromatic diamine A2 is alkylated, and the amine groups are bonded directly to the aromatic compound.

20 . The process according to claim 11 , wherein the urethane-group-containing component B1 is the reaction product of a hydroxyl-group-containing component B1.1 with an isocyanate component B1.2, wherein the hydroxyl-group-containing component B1.1 is a polyether polyol component of poly(oxyalkylene) glycol, the isocyanate component B1.2 is an aromatic diisocyanate of methylene di(phenyl isocyanate), and the ratio of the OH groups of component B1.1 to the NCO groups of the isocyanate component B1.2 is in a range of from 1:1.05 to 1:2.05.

21 . The process according to claim 12 , wherein

(iv) the polyether polyol component A1 of poly(oxyalkylene glycol) contains at least one poly(oxyalkylene) glycol of ethylene oxide and/or propylene oxide;

(v) the polyether polyol component A1 comprises at least one propoxylated polyethylene glycol A1.1, at least one polypropylene glycol A1.2 and at least one propoxylated trimethylolpropane A1.3; or

(vi) the aromatic diamine A2 is a mononuclear aromatic compound, the aromatic diamine A2 is alkylated, and the amine groups are bonded directly to the aromatic compound.

22 . The process according to claim 12 , wherein the urethane-group-containing component B1 is the reaction product of a hydroxyl-group-containing component B1.1 with an isocyanate component B1.2, wherein the hydroxyl-group-containing component B1.1 is a polyether polyol component of poly(oxyalkylene) glycol, the isocyanate component B1.2 is an aromatic diisocyanate of methylene di(phenyl isocyanate), and the ratio of the OH groups of component B1.1 to the NCO groups of the isocyanate component B1.2 is in a range of from 1:1.05 to 1:2.05.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 6, 2022
From: AKZO NOBEL COATINGS INTERNATIONAL B.V.
To: QUAKER HOUGHTON B.V.
Reel/Frame 058563/0037 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 29, 2017
From: PIECHA, CHRISTOPH; SEEGER, DIRK; HOHNHOLZ, DIETER
To: AKZO NOBEL COATINGS INTERNATIONAL B.V.
Reel/Frame 044506/0907 →