IP Library Granted Patent US 10,870,767
Granted Patent B2
US 10,870,767 · App. 16/846,287 · Granted Dec 22, 2020

Multifunctional paints and caulks with controllable electromagnetic properties

Inventor: George Clayton Hansen (Midway, UT)
C09D5/32C09D5/24C09D7/61C09D7/70H01B1/22H05K9/009H05K9/0079C08K3/04C08K7/06C08K9/10C08K2003/0862C08K2201/001C08K2201/003
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Quick Facts
Patent No.
US 10,870,767
App. No.
16/846,287
Granted
Dec 22, 2020
Kind
B2
Abstract

An electrically conductive paint/caulk is disclosed that may be applied by spraying, rolling, and/or brushing using conventional techniques/may be dispensed from a tube. The electrically conductive paint/caulk has a plurality of metal-coated fibers precision chopped to short lengths, optionally a plurality of conductive filament structures having a high-aspect ratio, and a polymer base. The metal-coated fibers and optional conductive filament structures are dispersed uniformly within the polymer base to create a complex electron transport system facilitating conductivity sufficient for a full range of electromagnetic properties including electrostatic dissipation, electrostatic discharge, and shielding. The complex electron transport system created facilitates the full range of electromagnetic properties with lower loadings of conductors, reduces viscosity, and the additional unloaded portion of paint/caulk receives other multifunctional additives.

Claims (30)

1. An electrically conductive paint that may be applied by spraying, rolling, and/or brushing using conventional techniques, the electrically conductive paint comprising:

a plurality of nickel-coated carbon fibers comprising carbon fibers having diameters ranging from 3 microns up to 7 microns and a nickel coating, the nickel-coated carbon fibers being precision chopped to lengths of 0.05 millimeters to 1 millimeter;

0% or more of a plurality of conductive filament structures having a branched structure and a high-aspect ratio; and

a polymer base, the nickel-coated carbon fibers and the 0% or more of conductive filament structures being dispersed uniformly within the polymer base such that the volume resistivity of the electrically conductive paint ranges from 10 8 to 10 3 ohm-cm.

2. The electrically conductive paint of claim 1 wherein the nickel coating has a thickness such that the nickel ranges from 15% to 75% of the metal-coated fiber by weight.

3. The electrically conductive paint of claim 1 wherein the nickel coating has a thickness such that the nickel is about 20% of the metal-coated fiber by weight.

4. The electrically conductive paint of claim 1 wherein the nickel coating has a thickness such that the nickel is about 40% of the metal-coated fiber by weight.

5. The electrically conductive paint of claim 1 wherein the electrically conductive paint exhibits protection from at least one of electrostatic dissipation and electrostatic discharge.

6. The electrically conductive paint of claim 1 further comprising a functional additive.

7. The electrically conductive paint of claim 6 wherein the functional additive is selected from the group of functional additives consisting of coloring particles, hardening agents, lubricating agents, magnetic particles, and any combination of such additives.

8. A multifunctional, electrically conductive paint that may be applied by spraying, rolling, and/or brushing using conventional techniques, the electrically conductive paint comprising:

a plurality of nickel-coated carbon fibers comprising carbon fibers and a nickel coating having a thickness such that the nickel ranges from 15% to 75% of the nickel-coated carbon fiber by weight, the nickel-coated carbon fibers being chopped to lengths of 0.05 millimeters to 1 millimeter;

0% or more of a plurality of conductive filament structures having a branched structure and a high-aspect ratio;

a functional additive, and

a polymer base, the nickel-coated carbon fibers and the 0% or more of conductive filament structures being dispersed uniformly within the polymer base such that the volume resistivity of the electrically conductive paint ranges from 10 8 to 10 3 ohm-cm.

9. The multifunctional, electrically conductive paint of claim 8 wherein the functional additive is selected from the group of functional additives consisting of coloring particles, hardening agents, lubricating agents, magnetic particles, and any combination of such additives.

10. The multifunctional, electrically conductive paint of claim 8 wherein carbon fibers having diameters ranging from 3 microns up to 7 microns.

11. The multifunctional, electrically conductive paint of claim 8 wherein the nickel metal coating has a thickness such that the nickel is about 20% of the metal-coated fiber by weight.

12. The multifunctional, electrically conductive paint of claim 8 wherein the nickel metal coating has a thickness such that the nickel is about 40% of the metal-coated fiber by weight.

13. The multifunctional, electrically conductive paint of claim 8 wherein the electrically conductive paint exhibits protection from at least one of electrostatic dissipation and electrostatic discharge.

14. An electrically conductive caulk that is pliable and dispensable from a tube, the electrostatic discharge caulk comprising:

a plurality of nickel-coated carbon fibers comprising carbon fibers having diameters ranging from 3 microns up to 7 microns and a nickel coating, the nickel-coated carbon fibers being chopped to lengths of 0.1 millimeters to 1 millimeter;

0% or more of a plurality of conductive filament structures having a branching structure and a high-aspect ratio; and

a polymer base, the nickel-coated carbon fibers and conductive structures being dispersed uniformly within the polymer base such that the volume resistivity of the electrically conductive caulk ranges from 10 8 to 10 3 ohm-cm.

15. The electrically conductive caulk of claim 14 further comprising a functional additive.

16. The electrically conductive caulk of claim 15 wherein the functional additive is selected from the group of functional additives consisting of coloring particles, hardening agents, lubricating agents, magnetic particles, and any combination of such additives.

17. The electrically conductive caulk of claim 14 wherein the nickel coating has a thickness such that the nickel ranges from 15% to 75% of the metal-coated fiber by weight.

18. The electrically conductive caulk of claim 14 wherein the nickel coating has a thickness such that the nickel is about 20% of the metal-coated fiber by weight.

19. The electrically conductive caulk of claim 14 wherein the nickel coating has a thickness such that the nickel is about 40% of the metal-coated fiber by weight.

20. The electrically conductive caulk of claim 14 wherein the electrically conductive paint exhibits protection from at least one of electrostatic dissipation and electrostatic discharge.

Assignments (3)
INTELLECTUAL PROPERTY ASSIGNMENT AGREEMENT Recorded Jun 16, 2026
From: HANSEN LEGACY HOLDINGS, LLC; GEORGE AND CYNTHIA HANSEN REVOCABLE TRUST; HANSEN, GEORGE; HANSEN, NATHAN; HANSEN, LAUREN; CYNTHIA HANSON DISCLAIMER TRUST; CONDUCTIVE GROUP, LLC; CONDUCTIVE COMPOSITES COMPANY L.L.C.; CONDUCTIVE COMPOSITES ENTERPRISES, LLC; FARADAY CASES, LLC; FARADAY STRUCTURES LLC; CONDUCTIVE COMPOSITES LEASING COMPANY, L.C.; CONDUCTIVE COMPOSITES COMPANY IP, LLC; JENKINS LAND & LIVESTOCK, LLC; ENHANCE ENGINEERING, INC.
To: PRINCIPAL CG HOLDINGS LLC
Reel/Frame 075762/0581 →
INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jun 16, 2026
From: PRINCIPAL CG HOLDINGS LLC, A DELAWARE LIMITED LIABILITY COMPANY, AS A GRANTOR
To: APEX GROUP LOAN SERVICES NEW YORK LLC
Reel/Frame 075751/0477 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2020
From: HANSEN, GEORGE CLAYTON
To: CONDUCTIVE COMPOSITES COMPANY IP, LLC
Reel/Frame 052373/0643 →
Continuity (3)
Continuation 16601095 · Oct 14, 2019
Provisional Application 62768740 · Nov 16, 2018
Related Publication 20200239711A1 · Jul 30, 2020