Claims
- 1. An electroconductive composition of matter characterized by microwave shielding capability and consisting essentially of (1) a mass of small particles formed of a core material and of a thin external coating on said core material, of an electrically-conductive member selected from the group consisting of a carbide, boride or silicide and (2) a resin matrix within which said particles are dispersed in particle-to-particle contact and wherein said composition has an electoresistivity of less than 2500 ohm centimeters
- 2. A composition as defined in claim 1 wherein said coating is a carbide which forms less than about 25% of the mass of said particles.
- 3. A composition as defined in claim 1 wherein said core material is selected from the group consisting of cobalt, nickel, iron, or alloys of said materials.
- 4. A composition as defined in claim 1 wherein said core material is superparamagnetic.
- 5. As an article of manufacture, a gasket formed of the material defined in claim 1.
- 6. A composition as defined in claim 1 wherein said coating is less than 10 atomic layers thick.
- 7. A composition as defined in claim 1 wherein said coating is selected from the group comprising of nickel carbide and iron carbide.
- 8. A composition as defined in claim 7 wherein said coating is less than 10 atomic layers thick.
- 9. A composition as defined in claim 1 wherein said core material is selected from the group consisting of cobalt, nickel, iron, or alloys of said materials.
- 10. A composition as defined in claim 9 wherein said coating is less than 10 atomic layers thick.
- 11. A process for forming chemically inert and electrically conductive metal-surface-bearing powders, a mass of which is characterized by a resistivity of less than about 2500 ohm centimeters, said process comprising the steps of
- (1) forming on said metal-surface, a coating of a compound selected from an electrically conductive silicide, carbide or boride, and
- (2) limiting the thickness of said surface layer to less than 10 atomic layers of said coating.
- 12. A process as defined in claim 11 wherein said coating is characterized by a resistivity of less than 2500 ohm-centimeters.
- 13. A process as defined in claim 11 wherein said thin layer is carbide of nickel, iron, cobalt, or an alloy of nickel iron or cobalt.
- 14. A flowable liquid composition adapted to harden to a solid electrically conductive composition having an electro-resistivity of less than 2500 ohm centimeters and comprising an electrically conductive carbide or silicide-coated metal powders therein, said powders forming the electrically-conductive component of said composition.
- 15. A composition as defined in claim 14 wherein said particulate material is a nickel-carbide coated nickel.
- 16. A liquid as defined in claim 14 wherein said powders are coated with iron carbide or nickel carbide and wherein said composition, on drying, exhibits a resistivity less than 2500 ohm-centimeters.
- 17. As a composition of matter of resin matrix comprising therein a particulate material in particle-to-particle contact within said composition and wherein said particles have exterior surfaces formed of at least one member selected from the group comprisising electrically-conductive carbides, electrically-conductive silicides and electrically-conductive borides and wherein said composition has an electrical conductivity kof less than 2500 ohm centimeters.
- 18. A composition as defined in claim 17 wherein said particulate material is a nickel-carbide coated nickel.
RELATED APPLICATIONS
This is a division of application Ser. No. 783,075 filed Mar. 30. 1977; now U.S. Pat. No. 4,137,361 which was itself a continuation in part of U.S. Ser. No. 540,521 filed Jan. 13, 1975, now U.S. Pat. No. 4,092,459.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
3743499 |
Ramquist |
Jul 1973 |
|
3904448 |
Takahashi et al. |
Sep 1975 |
|
4112180 |
Steigelman |
Sep 1978 |
|
Divisions (1)
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Number |
Date |
Country |
Parent |
783075 |
Mar 1977 |
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
540521 |
Jan 1975 |
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