Claims
- 1. A coating composition which contains a resin and fine particles of an electrically semiconductive substance present in amounts sufficient to impart varistor properties to coating films formed therefrom on a work article surface, said films formed therefrom exhibiting varistor properties represented by the following equation (1):
- I=(V/V.sub.1).sup.n ( 1)
- wherein I is a current density (mA/cm.sup.2); V.sub.1 is a voltage at which a current of 1 mA begins to flow when a voltage applied to the coating film is increased; V is an applied voltage; and n is an exponent showing the non-linearity between I and V and is 1.5 or more.
- 2. A coating composition as in claim 1, wherein said fine particles of an electrically semiconductive substance are present in an amount of from 5 to 70 parts by weight per 100 parts by weight of the solids content of said coating composition.
- 3. A coating composition as in claim 1, wherein said electrically semiconductive substance is molybdenum disulfide.
- 4. A process for production of a coated metal article, which comprises applying a coating composition in a dry film thickness of from 0.5 to 20 microns on a metal plate or a metal formed article with or without having been subjected to a surface treatment and then drying or baking at a temperature ranging from room temperature to 300.degree. C., said coating composition containing a resin and fine particles of an electrically semiconductive substance present in amounts sufficient to impart varistor properties to coating films formed therefrom, said films formed therefrom exhibiting varistor properties represented by the following equation (1):
- I=(V/V.sub.1).sup.n ( 1)
- wherein I a current density (mA/cm.sup.2); V.sub.1 is a voltage at which a current of 1 mA begins to flow when a voltage applied to the coating film is increased; V is an applied voltage; and n is an exponent showing the non-linearity between I and V and is 1.5 or more.
- 5. A method comprising forming a coating film by the use of a coating composition and further subjecting said coating film to electrodeposition coating, said coating composition containing a resin and fine particles of an electrically semiconductive substance present in amounts sufficient to impart varistor properties to the coating film, said coating films exhibiting varistor properties represented by the following equation (1):
- I=(V/V.sub.1).sup.n ( 1)
- wherein I a current density (mA/cm.sup.2); V.sub.1 is a voltage at which a current of 1 mA begins to flow when a voltage applied to the coating film is increased; V is an applied voltage; and n is an exponent showing the non-linearity between I and V and is 1.5 or more.
- 6. A coating composition which contains a resin and fine particles of molybdenum disulfide as an electrically semiconductive substance present in an amount of 5 to 70 parts by weight per 100 parts by weight of the solids content of said coating composition and sufficient to impart varistor properties to coating films produced therefrom on a work article surface, said films formed therefrom exhibiting varistor properties represented by the following equation (1):
- I=(V/V.sub.1).sup.n ( 1)
- wherein I is a current density (mA/cm.sup.2); V.sub.1 is a voltage at which a current of 1 mA begins to flow when a voltage applied to the coating film is increased; V is an applied voltage; and n is an exponent showing the non-linearity between I and V and is 1.5 or more.
- 7. A process for production of a coated metal article which comprises applying a coating composition in a dry film thickness of from 0.5 to 20 microns on a metal plate or a metal formed article with or without having been subjected to a surface treatment and then drying or baking at a temperature ranging from room temperature to 300.degree. C., said coating composition containing a resin and fine particles of molybdenum disulfide as an electrically semiconductive substance present in an amount of 5 to 75 parts by weight per 100 parts by weight of the solid content of said coating composition and sufficient to impart varistor properties to coating films produced therefrom, said films formed therefrom exhibiting varistor properties represented by the following equation (1):
- I=(V/V.sub.1).sup.n ( 1)
- wherein I is a current density (mA/cm.sup.2); V.sub.1 is a voltage at which a current of 1 mA begins to flow when a voltage applied to the coating film is increased; V is an applied voltage; and n is an exponent showing the non-linearity between I and V and is 1.5 or more.
- 8. A method which comprises forming a coating film by the use of a coating composition and further subjecting said coating film to electrodeposition coating, said coating composition containing a resin and fine particles of molybdenum disulfide as an electrically semiconductive substance present in an amount of 5 to 75 parts by weight per 100 parts by weight of the solid content of said coating composition and sufficient to impart varistor properties to the coating film, said coating film exhibiting varistor properties represented by the following equation (1):
- I=(V/V.sub.1).sup.n ( 1)
- wherein I is a current density (mA/cm.sup.2); V.sub.1 is a voltage at which a current of 1 mA begins to flow when a voltage applied to the coating film is increased; V is an applied voltage; and n is an exponent showing the non-linearity between I and V and is 1.5 or more.
Priority Claims (1)
Number |
Date |
Country |
Kind |
1-282508 |
Oct 1989 |
JPX |
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Parent Case Info
This application is a continuation of now abandoned application, Ser. No. 07/600,985, filed Oct. 23, 1990.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
4500399 |
Hart et al. |
Feb 1985 |
|
Foreign Referenced Citations (2)
Number |
Date |
Country |
40035 |
Apr 1978 |
JPX |
201488 |
Aug 1989 |
JPX |
Continuations (1)
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Number |
Date |
Country |
Parent |
600985 |
Oct 1990 |
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