IP Library Granted Patent US 7,367,373
Granted Patent B2
US 7,367,373 · App. 11/083,454 · Granted May 6, 2008

Multi-layer extrusion head for self-sealing cable

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Quick Facts
Patent No.
US 7,367,373
App. No.
11/083,454
Granted
May 6, 2008
Kind
B2
Abstract

An electrical cable and a method for manufacturing the electrical cable are provided in which a plurality of insulated conductors have an inner protective layer extruded thereabout. A plurality of longitudinally extending ribs or fins or exterior ribbed or finned surfaces are formed outward of the inner protective layer between which exist a plurality of voids. An outer insulation layer and the self-sealing material can be formed sequentially or simultaneously in the same operation as the fins or ribbed surface and the inner layer or in a subsequent operation.

Claims (28)

1. An extrusion head for producing a self-sealing cable around a conductor, said extrusion head comprising:

an inner channel directing a flow of an inner layer comprising a first material around the conductor;

an outer channel directing a flow of an outer layer comprising a second material around said inner layer; and

at least two sealant channels displaced between said inner channel and said outer channel extending to a connecting point with said inner channel and said outer channel, said at least two sealant channels directing a sealant to fill a corresponding number of sealant regions between said inner layer and said outer layer wherein the connection point is configured to cause the flow of the inner layer comprising the first material and the flow of the outer layer comprising the second material to join before the flow of the inner layer comprising the first material contacts the conductor.

2. The extrusion head as described in claim 1 , wherein said extrusion head produces an equal number of inner layers and outer layers surrounding said conductor.

3. The extrusion head as described in claim 1 wherein said at least two sealant channels are equally spaced about said extrusion head.

4. The extrusion head as described in claim 1 wherein said at least two sealant channels are disproportionately spaced about said extrusion head.

5. The extrusion head as described in claim 1 , further comprising at least two regions respectively in the at least two sealant channels, the at least two regions being configured to prevent sealant flow to allow joining of the first material and the second material.

6. The extrusion head as described in claim 1 , wherein the extrusion head is configured to form at least one fin between the first material and the second material where the first material and the second material join.

7. The extrusion head as described in claim 6 , wherein the at least one fin comprises one of the following configurations: straight, spiral, and oscillating about an axis of the conductor.

8. An extrusion head for encapsulating a conductor with an inner layer of insulating material, an outer layer of insulating material, and a sealant selectively positioned between said inner layer and said outer layer, said extrusion head comprising a housing having an elongate bore therethrough to receive the conductor; said housing defining:

a first channel for supplying a first layer of a first material to a connecting point;

a second channel for supplying a second layer of a second material around said first layer at said connecting point; and

a plurality of sealing channels extending to said connecting point to fill a corresponding number of sealant regions between said first layer and said second layer with a sealant wherein the connection point is configured to cause the first material and the second material to join before the first material contacts the conductor.

9. The extrusion head as described in claim 8 , wherein said extrusion head produces an equal number of inner layers and outer layers surrounding said conductor.

10. The extrusion head as described in claim 8 wherein said sealant channels are equally spaced about said extrusion head.

11. The extrusion head as described in claim 8 wherein said sealant channels are disproportionately spaced about said extrusion head.

12. The extrusion head as described in claim 8 , further comprising a plurality of regions respectively in the plurality of sealing channels, the plurality of regions being configured to prevent sealant flow to allow joining of the first material and the second material.

13. The extrusion head as described in claim 8 , wherein the extrusion head is configured to form at least one fin between the first material and the second material where the first material and the second material join.

14. The extrusion head as described in claim 13 , wherein the at least one fin comprises one of the following configurations: straight, spiral, and oscillating about an axis of the conductor.

15. An extrusion head for producing a self-sealing cable around a conductor, said extrusion head comprising a housing having an elongate bore therethrough to receive the conductor, said housing defining:

an inner channel directing the flow of a first material onto the conductor in said bore;

an outer channel directing the flow of a second material onto the first material surrounding the conductor; and

a plurality of sealant pathways directing sealant toward said bore to create fins about the conductor with said first material, the extrusion head being configured to cause the first material and the second material to join before the first material contacts the conductor.

16. The extrusion head as described in claim 15 wherein said at least two sealant channels are equally spaced about said extrusion head to create equally spaced fins about the conductor.

17. The extrusion head as described in claim 15 wherein said sealant pathways are disproportionately spaced about said extrusion head to create disproportionately spaced fins about the conductor.

18. The extrusion head as described in claim 15 , further comprising a plurality of regions respectively in the plurality of sealant pathways, the plurality of regions being configured to prevent sealant flow to allow joining of the first material and the second material.

19. The extrusion head as described in claim 15 , wherein the fins comprise one of the following configuration: straight, spiral, and oscillating about an axis of the conductor.

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 →
CONVERSION Recorded Jun 26, 2014
From: SOUTHWIRE COMPANY
To: SOUTHWIRE COMPANY, LLC
Reel/Frame 033244/0787 →
GRANT OF SECURITY INTEREST IN PATENT RIGHTS Recorded Feb 21, 2014
From: SOUTHWIRE COMPANY, LLC; COLEMAN CABLE, INC.; TECHNOLOGY RESEARCH CORPORATION
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 032308/0469 →
SECURITY AGREEMENT Recorded Feb 12, 2014
From: SOUTHWIRE COMPANY, LLC; COLEMAN CABLE, INC.; TECHNOLOGY RESEARCH CORPORATION
To: BANK OF AMERICA, N.A., AS COLLATERAL AGENT
Reel/Frame 032251/0277 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2007
From: SPRUELL, STEPHEN LEE
To: SOUTHWIRE COMPANY
Reel/Frame 019808/0905 →