IP Library Granted Patent US 9,142,336
Granted Patent B2
US 9,142,336 · App. 14/144,150 · Granted Sep 22, 2015

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

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Quick Facts
Patent No.
US 9,142,336
App. No.
14/144,150
Granted
Sep 22, 2015
Kind
B2
Abstract

Disclosed is type THHN cable 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 nylon sheath. A high viscosity, high molecular weight silicone based pulling lubricant for THHN cable, or alternatively, erucamide or stearyl erucamide for small THHN gauge wire, is incorporated, by alternate methods, with the nylon material from which the outer sheath is extruded, and is effective to reduce the required pulling force on the cable during installation.

Claims (6)

1. In a process for manufacturing an electrical power cable of the type comprising a conductor and protective sheath surrounding said conductor, in which the protective sheath has at least its exterior portion formed of a layer of polyethylene material, the improvement in which a pulling lubricant comprising silicone is introduced in said layer of polyethylene material during the manufacture of the cable, in a concentration sufficient to either permeate throughout, or migrate through, said exterior portion of the sheath to be available at the exterior surface of said protective sheath when said cable is pulled along an installation surface through building passageways, said concentration sufficient to reduce the required installation pulling force for installation of the cable through said building passageways; wherein the so-manufactured cable has the characteristic that an average amount of force required to install said cable through an arrangement of conduit is less than the average amount of force required to install a cable of the same cable type and size, that has substantially no lubrication at said exterior portion, through said arrangement of conduit, the arrangement of conduit being defined as PVC conduit that is sized to accommodate said cable having an initial 10 foot straight section of conduit, followed by a first 90° bend having a left-orientation, followed by a second 90° bend having a right orientation, followed by a 30 foot straight section of conduit, followed by a third 90° bend having a right-orientation, followed by a 5 foot straight section of conduit, followed by a fourth 90° bend having a right-orientation, followed by a 10 foot straight section of conduit.

2. In a process for manufacturing an electrical power cable of the type comprising a conductor and protective sheath surrounding said conductor, in which the protective sheath has at least its exterior portion formed of a layer of thermosetting resin, the improvement in which a pulling lubricant comprising silicone is introduced into said layer of thermosetting resin during the manufacture of the cable, in a concentration to either permeate throughout, or migrate through, said exterior portion of the sheath to be available at the exterior surface of said protective sheath when said cable is pulled along an installation surface through building passageways; wherein the so-manufactured cable has the characteristic that an average amount of force required to install said cable through an arrangement of conduit is less than the average amount of force required to install a cable of the same cable type and size, that has substantially no lubrication at said exterior portion, through said arrangement of conduit, the arrangement of conduit being defined as PVC conduit that is sized to accommodate said cable having an initial 10 foot straight section of conduit, followed by a first 90° bend having a left-orientation, followed by a second 90° bend having a right-orientation, followed by a 30 foot straight section of conduit, followed by a third 90° bend having a right-orientation, followed by a 5 foot straight section of conduit, followed by a fourth 90° bend having a right-orientation, followed by a 10 foot straight section of conduit.

3. The improvement as defined by either claim 1 or claim 2 in which the required installation pulling force of the so-manufactured cable has a quantifiable reduction of at least about 50% in comparison to the required installation pulling force of said non-lubricated cable.

4. An improved process of manufacturing a finished electrical cable assembly of the type comprising a central conductor core and a surrounding sheath of at least one outer layer of material defining the exterior surface of the finished cable, said process comprising: (a) combining a silicone based pulling lubricant with said material prior to the formation of said outer layer of said sheath, the silicone based pulling lubricant being of a concentration sufficient to reduce the required installation pulling force of the cable during its installation through building passageways and enclosures, and further of the type which permeates throughout the at least one outer layer of the sheath to be available at the said exterior surface as said cable is pulled along an installation surface through building passageways and enclosures; and (b) extruding said combined silicone based pulling lubricant and said material to surround said central conductor core with at least said outer layer;

wherein the cable has the characteristic that a coefficient of friction of said cable is less than or equal to about 0.20, said coefficient of friction being determinable using a test apparatus (i) constructed of a PVC conduit that is sized to accommodate said cable and (ii) comprising a first conduit segment of about 30 feet, a second conduit segment of about 5 feet, and a third conduit segment of about 10 feet with each conduit segment separated by a 90° bend, and (iii) means for applying a back tension to said cable, the coefficient of friction based on a force between said cable and a PVC conduit determinable as a function of an average back tension applicable to said cable and an average amount of force required to pull said cable through the test apparatus.

5. The process as defined by claim 4 in which the layer of material comprises a thermosetting resin.

Assignments (6)
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 →
TERMINATION AND RELEASE OF INTELLECTUAL PROPERTY SECURITY AGREEMENTS Recorded Oct 23, 2024
From: BANK OF AMERICA, N.A., AS AGENT
To: SOUTHWIRE COMPANY, LLC; COLEMAN CABLE, LLC (F/K/A COLEMAN CABLE, INC.); TECHNOLOGY RESEARCH, LLC (F/K/A TECHNOLOGY RESEARCH CORPORATION); SUMNER MANUFACTURING COMPANY, LLC; MADISON ELECTRIC PRODUCTS, LLC; NOVINIUM, LLC; WATTEREDGE, LLC; TAPPAN WIRE & CABLE, LLC; UNITED COPPER INDUSTRIES, LLC; TOPAZ LIGHTING COMPANY LLC; OBI PARTNERS, LLC; WIIP, INC.
Reel/Frame 069235/0104 →
SECURITY INTEREST Recorded May 17, 2018
From: SOUTHWIRE COMPANY, LLC; COLEMAN CABLE, LLC; TECHNOLOGY RESEARCH, LLC; SUMNER MANUFACTURING COMPANY, LLC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 046183/0644 →
AMENDMENT NUMBER TWO TO GRANT OF SECURITY INTEREST IN PATENT RIGHTS Recorded May 17, 2018
From: SOUTHWIRE COMPANY, LLC; SUMNER MANUFACTURING COMPANY, LLC; COLEMAN CABLE, LLC; TECHNOLOGY RESEARCH, LLC
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 046187/0922 →
CONVERSION Recorded Apr 16, 2014
From: SOUTHWIRE COMPANY
To: SOUTHWIRE COMPANY, LLC
Reel/Frame 032696/0773 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 30, 2013
From: CHAMBERS, TERRY; KUMMER, RANDY D.; ARMSTRONG, JOHN; SASSE, PHILIP; REECE, DAVID; LAM, HAI
To: SOUTHWIRE COMPANY
Reel/Frame 031860/0817 →