IP Library Granted Patent US 9,828,516
Granted Patent B2
US 9,828,516 · App. 13/255,776 · Granted Nov 28, 2017

Paint composition, method of forming a paint film using same and the paint film

Inventors: Haruko Ryuzaki (Yokohama, JP); Kaori Notoya (Sagamihara, JP); Shigeo Misawa (Yokohama, JP)
Assignee: BASF Japan Ltd.
C09D11/50C09D5/36C09D7/1225C08K3/22C08K3/34C08K9/02Y10T428/251Y10T428/257
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Quick Facts
Patent No.
US 9,828,516
App. No.
13/255,776
Granted
Nov 28, 2017
Kind
B2
Abstract

A paint composition producing paint films which change from an achromatic color to a chromatic color when the angle of incidence of the light with respect to the normal to the paint film plane is changed. The paint composition comprises (A) glitter material which has an angle-dependent interference effect and (B) metal oxide coated mica and/or metal oxide coated alumina flakes in proportions where the content ratio ((A)/(B)) of the (A) component with respect to the (B) component, as the solid fraction mass ratio, is from 2.5/1 to 1/6 and in which the interference color of the (A) component and the interference color of the (B) component at a face angle of the paint film have a complementary color relationship.

Claims (20)

1. A paint composition comprising

(A) a glitter material comprising metal oxide coated silica flakes having an angle-dependent interference effect and

(B) metal oxide coated mica and/or metal oxide coated alumina flakes

in proportions where the content ratio ((A)/(B)) of the (A) component with respect to the (B) component, as the solid fraction mass ratio, is from 2.5/1 to 1/6 and wherein the interference color of the (A) component and the interference color of the (B) component at a face angle of the paint film have a complementary color relationship, in which, on a hue ring of 100, the interference color of the (A) component is the hue 0 in the Munsell color system and with respect to this hue counterclockwise rotation is indicated by +50 and clockwise rotation is represented by −50, the interference color of the (B) component is within the range from +40 to +50, or within the range from −40 to −50, and wherein upon changing the viewing angle of a paint film obtained from the application of said paint composition from a face angle to a grazing angle the color of said paint film changes from an achromatic color having a saturation (C value) below 10 when the angle of incidence with the variable angle spectrophotometer is 75° and the change in saturation (C value) compared with the saturation (C value) at 0° of the angle of incidence is more than 10, wherein a face angle indicates a viewing angle where a light source angle of incidence is within the range from 0° to 25° and a received-light angle approximates to a mirror reflection of the angle of incidence (mirror reflection angle ±10°), and a grazing angle indicates a viewing angle where the light source angle of incidence is within the range from 65° to about 90° and the received-light angle approximates to a mirror reflection of the angle of incidence.

2. The paint composition of claim 1 , where the aforementioned paint composition further comprises (C) a black colored pigment.

3. A method of paint-film formation comprising

applying to a surface a paint composition comprising

(A) a glitter material comprising metal oxide coated silica flakes having an angle-dependent interference effect and

(B) metal oxide coated mica and/or metal oxide coated alumina flakes

in proportions where the content ratio ((A)/(B)) of the (A) component with respect to the (B) component, as the solid fraction mass ratio, is from 2.5/1 to 1/6 and wherein, by setting the interference color of the (A) component and the interference color of the (B) component, in the face angle of the paint film, to a complementary color relationship, in which on a hue ring of 100, the interference color of the (A) component is the hue 0 in the Munsell color system and with respect to this hue counterclockwise rotation is indicated by +50 and clockwise rotation is represented by −50, the interference color of the (B) component is within the range +40 to +50, or within the range from −40 to −50, and

forming a paint film from the applied paint composition, wherein upon changing the viewing angle of the paint film from a face angle to a grazing angle the color of said paint film changes from an achromatic color having a saturation (C value) below 10 when the angle of incidence with the variable angle spectrophotometer is 75° and the change in saturation (C value) compared with the saturation (C value) at 0° of the angle of incidence is more than 10 when the angle of incidence measured with the variable angle spectrophotometer is 75° and the change in saturation (C Value) compared with the saturation (C value) at 0° of the angle of incidence wherein a face angle indicates a viewing angle where the light source angle of incidence is within the range from 0° to 25° and the received-light angle approximates to a mirror reflection of the angle of incidence (mirror reflection angle ±10°), and a grazing angle indicates a viewing angle where the light source angle of incidence is within the range from 65° to 90° and the received-light angle approximates to a mirror reflection of the angle of incidence.

4. The method of claim 3 , where the aforementioned paint composition further comprises (C) a black colored pigment.

5. A method of paint-film formation comprising

applying the paint composition of claim 1 as a base coat paint to a surface so as to form a base coat paint film and

forming a clear paint film by applying a clear paint over said base coat paint film.

6. A method of paint-film formation comprising

applying a first base coat paint to a surface to form a first base coat paint film,

applying the paint composition of claim 1 as a second base coat paint over said first base coat paint film to form a second base coat paint film, and

applying a clear paint over said second base coat paint film to form a clear paint film.

7. A paint film which has been obtained using the method of paint-film formation of claim 3 .

Assignments (2)
MERGER AND CHANGE OF NAME Recorded May 13, 2015
From: BASF COATINGS JAPAN LTD.; BASF JAPAN LTD.
To: BASF JAPAN LTD.
Reel/Frame 035653/0653 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 12, 2011
From: RYUZAKI, HARUKO; NOTOYA, KAORI; MISAWA, SHIGEO
To: BASF COATINGS JAPAN LTD.
Reel/Frame 026885/0035 →
Priority Claims (1)
JP 2009-054754 · Mar 9, 2009 · national
Continuity (1)
Related Publication 20110318570A1 · Dec 29, 2011