IP Library Granted Patent US 10,714,235
Granted Patent B2
US 10,714,235 · App. 15/590,881 · Granted Jul 14, 2020

Method of manufacturing electrical cable, and resulting product, with reduced required installation pulling force

Inventors: Philip Sasse (Douglasville, GA); Terry Chambers (Ranburne, AL); Randy D. Kummer (Villa Rica, GA); John Armstrong (Villa Rica, GA); David Reece (Calhoun, GA); Hai Lam (Douglasville, GA)
Assignee: Southwire Company, LLC
H01B7/1875C08K5/20C08K5/54C08L77/00H01B3/22H01B3/443H01B3/445H01B3/465H01B7/0009H01B7/02H01B7/0216H01B7/292H01B13/145H01B13/24H02G3/0406C08G77/04
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Quick Facts
Patent No.
US 10,714,235
App. No.
15/590,881
Granted
Jul 14, 2020
Kind
B2
Abstract

Disclosed are cable types, including a type THHN cable, the cable types having a reduced surface coefficient of friction, and the method of manufacture thereof, in which the central conductor core and insulating layer are surrounded by a material containing nylon or thermosetting resin. A silicone based pulling lubricant for said cable, or alternatively, erucamide or stearyl erucamide for small cable gauge wire, is incorporated, by alternate methods, with the resin material from which the outer sheath is extruded, and is effective to reduce the required pulling force between the formed cable and a conduit during installation.

Claims (39)

1. A thermoplastic high heat-resistant nylon-coated (THHN) electrical cable having reduced installation pulling force through a polyvinyl chloride (PVC) conduit setup, the THHN electrical cable comprising:

at least one conductor capable of carrying an electrical current through the THHN electrical cable, wherein the conductor is formed at least in part from copper; and,

a sheath for protecting the conductor, wherein the sheath comprises:

an insulating layer surrounding the conductor and providing electrical insulation to the conductor, wherein the insulating layer is formed at least in part from extruded polyvinyl chloride (PVC); and,

an outer layer surrounding, contacting and forming a coating for the insulating layer, wherein the outer layer further comprises;

an extruded nylon component;

a pulling lubricant incorporated in the extruded nylon component that aids in reducing the installation pulling force as the THHN electrical cable is pulled through a PVC conduit setup; and wherein,

the pulling lubricant is silicone based; and

the pulling lubricant is present in at least a portion of the outer layer; and further wherein,

the outer layer is both resistant to heat, moisture, oil and gasoline, and provides the THHN electrical cable with the physical characteristic of having an average coefficient of friction against an interior surface of a PVC conduit setup of less than about 0.25.

2. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 1 , wherein the silicone based pulling lubricant comprises a high molecular weight silicone based pulling lubricant.

3. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 1 , wherein the THHN electrical cable has the physical characteristic of having an average coefficient of friction against an interior surface of a PVC conduit setup of less than about 0.2.

4. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 1 , wherein the THHN electrical cable has the physical characteristic of having an average coefficient of friction against an interior surface of a PVC conduit setup of between about 0.125 and about 0.2.

5. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 1 , wherein the THHN electrical cable has the physical characteristic of having an average coefficient of friction against an interior surface of a PVC conduit setup of less than about 0.15.

6. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 1 , wherein the pulling lubricant comprises a low molecular weight silicone based pulling lubricant.

7. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 1 , wherein the at least one conductor comprises a plurality of grouped conductors.

8. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 1 , wherein the at least one conductor is a large gauge conductor.

9. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 8 , wherein the at least one conductor comprises an AWG 4/0 conductor.

10. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 1 , wherein the THHN electrical cable has a round profile.

11. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 1 , wherein the THHN electrical cable is rated for use in dry locations at temperatures not to exceed 90° C.

12. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 1 , wherein the THHN electrical cable is rated to carry current at voltages not to exceed 600 Volts.

13. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 1 , wherein the PVC conduit setup includes at least two 90° bends.

14. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 13 , wherein the PVC conduit setup includes a first straight section of conduit connected to a first one of the 90° bends, a second straight section of conduit connected between the first one of the 90° bends and a second one of the 90° bends, and a third straight section of conduit connected to the second one of the 90° bends.

15. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 14 , wherein the first straight section of the conduit is about 30′ long, the second straight section of the conduit is about 5′ long, and the third straight section of the conduit is about 10′ long.

16. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 1 , wherein the THHN electrical cable has the physical characteristic of having an average coefficient of friction against an interior surface of a PVC conduit setup of between about 0.132 and about 0.25.

17. A thermoplastic high heat-resistant nylon-coated (THHN) electrical cable having reduced installation pulling force through a polyvinyl chloride (PVC) conduit setup, the THHN electrical cable comprising:

at least one conductor capable of carrying an electrical current through the THHN electrical cable, wherein the conductor is formed at least in part from at least one metal; and,

a sheath for protecting the conductor, wherein the sheath comprises:

an insulating layer surrounding the conductor and providing electrical insulation to the conductor, wherein the insulating layer is formed at least in part from extruded polyvinyl chloride (PVC); and,

an outer layer surrounding, contacting and forming a coating for the insulating layer, wherein the outer layer further comprises;

an extruded nylon component;

a pulling lubricant that aids in reducing the installation pulling force as the THHN electrical cable is pulled through a PVC conduit setup; and wherein,

the pulling lubricant is present in at least a portion of the outer layer; and wherein,

the pulling lubricant is squeezable from the nylon component after the nylon component has been extruded and when the THHN electrical cable is pulled through a PVC conduit; and further wherein,

the outer layer is both resistant to heat, moisture, oil and gasoline, and provides the THHN electrical cable with the physical characteristic of having an average coefficient of friction against an interior surface of a PVC conduit setup of less than about 0.25.

18. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 17 , wherein the PVC conduit setup includes at least two 90° bends.

19. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 18 , wherein the PVC conduit setup includes a first straight section of conduit connected to a first one of the 90° bends, a second straight section of conduit connected between the first one of the 90° bends and a second one of the 90° bends, and a third straight section of conduit connected to the second one of the 90° bends.

20. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 19 , wherein the first straight section of the conduit is about 30′ long, the second straight section of the conduit is about 5′ long, and the third straight section of the conduit is about 10′ long.

21. The thermoplastic high heat-resistant nylon-coated (THHN) electrical cable of claim 17 , wherein the THHN electrical cable has the physical characteristic of having an average coefficient of friction against an interior surface of a PVC conduit setup of between about 0.132 and about 0.25.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Jul 31, 2025
From: WELLS FARGO BANK, NATIONAL ASSOCIATION
To: SOUTHWIRE COMPANY, LLC; COLEMAN CABLE, LLC; TECHNOLOGY RESEARCH, LLC; SUMNER MANUFACTURING COMPANY, LLC; MADISON ELECTRIC PRODUCTS, LLC; NOVINIUM, LLC; NOVINIUM HOLDINGS, INC.; WATTEREDGE, LLC; TAPPAN WIRE & CABLE, LLC; UNITED COPPER INDUSTRIES, LLC; TOPAZ LIGHTING COMPANY LLC; OBI PARTNERS, LLC; WIIP, INC.
Reel/Frame 072299/0141 →
AMENDMENT TO GRANT OF SECURITY INTEREST Recorded Sep 20, 2021
From: COLEMAN CABLE, LLC; SUMNER MANUFACTURING COMPANY, LLC; SOUTHWIRE COMPANY, LLC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 057552/0299 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 11, 2017
From: SASSE, PHILIP; CHAMBERS, TERRY; KUMMER, RANDY D.; ARMSTRONG, JOHN; REECE, DAVID; LAM, HAI
To: SOUTHWIRE COMPANY
Reel/Frame 042344/0857 →
CHANGE OF NAME Recorded May 11, 2017
From: SOUTHWIRE COMPANY
To: SOUTHWIRE COMPANY, LLC
Reel/Frame 042446/0758 →
Continuity (10)
Continuation 14858872 · Sep 18, 2015
Continuation 14144150 · Dec 30, 2013
Continuation 13774677 · Feb 22, 2013
Continuation 13274052 · Oct 14, 2011
Continuation 12787877 · May 26, 2010
Continuation 11675441 · Feb 15, 2007
Continuation In Part 11120487 · May 3, 2005
Continuation In Part 10952294 · Sep 28, 2004
Continuation In Part 10952294 · Sep 28, 2004
Related Publication 20170243674A1 · Aug 24, 2017