IP Library › Granted Patent US 9,963,787
Granted Patent B2
US 9,963,787 · App. 14/351,302 · Granted May 8, 2018

Paint pretreatment agent for coating-type paint, and coating-type painting method

Inventors: Teruzo Toi (Tokyo, JP); Minoru Inoue (Osaka, JP)
Assignee: Chemetall GmbH
C23C22/34C09D5/002C09D5/08C23C22/73C23C22/82B05D7/14B05D7/51C23C2222/20
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Quick Facts
Patent No.
US 9,963,787
App. No.
14/351,302
Granted
May 8, 2018
Kind
B2
Abstract

The pretreatment agent for use before forming a coat by paint application of the present invention contains (A) one or more metal elements selected from a group consisting of zirconium, titanium and hafnium, (B) fluorine, (C) one or more coupling agents selected from an amino group-containing silane coupling agent, its hydrolyzate, and its polymer, and (D) a component of at least one of an allylamine and a polyallylamine, in which the ratio by mass of the coupling agent (C) to the component (D), (C/D) is 1 or more. The coating method by paint application of the present invention includes a chemical conversion treatment step of chemically treating a metal substrate with the pretreatment agent, and a step of forming a coat by paint application on the chemically-treated metal substrate. When a coating film is formed through forming a coat by paint application on the surface of a metal substrate that has been pretreated according to the present invention, the coating film can have excellent adhesion, salt water resistance and impact resistance.

Claims (20)

1. A pretreatment agent for use before forming a coat by paint application, the pretreatment agent comprising:

(A) one or more metal elements selected from the group consisting of zirconium, titanium and hafnium,

(B) fluorine,

(C) one or more coupling agents selected from the group consisting of an amino group-containing silane coupling agent, a hydrolyzate of the amino group-containing silane coupling agent, and a polymer of the amino group-silane coupling agent, and

(D) a component of an allylamine and/or a polyallylamine,

wherein the ratio by mass of the one or more coupling agents (C) to the component (D), (C/D) is from 1.3 to 4, and wherein the ratio by mass of the total mass of the one or more coupling agents (C) and the component (D) to the mass of the one or more metal elements (A), ((C+D)/A) is from 0.8 to 7.0.

2. The pretreatment agent according to claim 1 , wherein the content of the one or more metal elements (A) is from 30 to 200 ppm by mass, the content of the one or more coupling agents (C) is from 100 to 300 ppm by mass as the solid concentration thereof, and the content of the component (D) is from 50 to 200 ppm by mass as the solid concentration thereof.

3. The pretreatment agent according to claim 1 , further comprising (E) one or more metal elements selected from the group consisting of aluminum, zinc, magnesium and barium.

4. The pretreatment agent according to claim 2 , further comprising (E) one or more metal elements selected from the group consisting of aluminum, zinc, magnesium and barium.

5. The pretreatment agent according to claim 2 , wherein the pretreatment agent does not contain an amino group-containing epoxy compound.

6. The pretreatment agent according to claim 3 , wherein the pretreatment agent does not contain an amino group-containing epoxy compound.

7. The pretreatment agent according to claim 4 , wherein the pretreatment agent does not contain an amino group-containing epoxy compound.

8. The pretreatment agent according to claim 1 , wherein the pretreatment agent does not contain an amino group-containing epoxy compound.

9. A coating method by paint application comprising a chemical conversion treatment step of chemically treating a metal substrate with the pretreatment agent of claim 8 , and a step of forming a coat by paint application on the chemically-treated metal substrate.

10. The coating method according to claim 9 , wherein the coating method by paint application is an aqueous coating or a powder coating.

11. The coating method according to claim 9 , wherein the metal substrate is an iron-based substrate.

12. The coating method according to claim 10 , wherein the metal substrate is an iron-based substrate.

13. The coating method according to claim 9 , wherein the coat has a thickness of at least 30 μm.

14. The coating method by paint application according to claim 10 , wherein the coat has a thickness of at least 30 μm.

15. The coating method by paint application according to claim 11 , wherein the coat has a thickness of at least 30 μm.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 12, 2015
From: TOI, TERUZO; INOUE, MINORU
To: CHEMETALL GMBH
Reel/Frame 035150/0816 →
AGREEMENT FOR ASSIGNMENT Recorded Jun 4, 2014
From: NIPPON PAINT CO., LTD.
To: CHEMETALL GMBH
Reel/Frame 033083/0956 →
Priority Claims (1)
JP 2011-227215 · Oct 14, 2011 · national
Continuity (1)
Related Publication 20150176136A1 · Jun 25, 2015