IP Library Patent Application 14278855
Patent Application
App. No. 14/278,855

NOISE DAMPENING ENERGY EFFICIENT TAPE AND GASKET MATERIAL

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Patent No.
US None
App. No.
14/278,855
Abstract

A noise dampening tape and gasket material for reducing or preventing unwanted electromagnetic interference from escaping or entering an enclosure. The noise dampening gasket includes an inner core section, a carbon material layer surrounding the inner core section, an insulating layer surrounding the carbon material layer, and a metal shield layer surrounding the insulating layer. The noise dampening tape includes a metal shield layer, an insulating layer adjacent to and in contact with the metal shield layer, a carbon material layer adjacent to and in contact with the insulating layer, and an adhesive layer disposed on a surface of the carbon material layer. A second adhesive layer can be disposed on a surface of the metal shield layer. The carbon fibers can be coated with silicone or polytetrafluoroethylene to enhance mechanical and electrical properties of the carbon material layer.

Claims (36)

1 . A carbon fiber textile with enhanced mechanical and electromagnetic properties comprising:

a plurality of carbon fibers aligned to form one or more tows of the carbon fibers;

a coating of polytetrafluoroethylene on the carbon fibers which electrically insulates the carbon fibers individually;

the one or more tows of polytetrafluoroethylene-coated carbon fibers arranged to form a polytetrafluoroethylene-coated carbon fiber textile;

the polytetrafluoroethylene-coated carbon fiber textile having a specific sheet resistance of the carbon fibers of less than or equal to 100 ohms per centimeter squared; and

the polytetrafluoroethylene-coated carbon fiber textile is resistant to breakage and spalling of the individual carbon fibers.

2 . The carbon fiber textile of claim 1 , wherein the polytetrafluoroethylene-coated carbon fiber textile has memory and returns to an original shape after a mechanical force is removed.

3 . The carbon fiber textile of claim 1 , wherein the specific resistivity is equal to or less than 1.0 ohms per centimeter squared along the aligned, polytetrafluoroethylene-coated carbon fibers.

4 . The carbon fiber textile of claim 1 , wherein the polytetrafluoroethylene-coated carbon fiber textile are less breakable than untreated carbon fibers under mechanical stress.

5 . The carbon fiber textile of claim 4 , wherein a 3 k tow of polytetrafluoroethylene-coated carbon fiber resists breakage at about 7 kg of pull.

6 . The carbon fiber textile of claim 1 , wherein the polytetrafluoroethylene-coated carbon fibers are woven, non-woven, basket-woven, piled or aligned to form the polytetrafluoroethylene-coated carbon fiber textile.

7 . The carbon fiber textile of claim 1 , wherein the polytetrafluoroethylene-coated carbon fiber textile attenuates radio frequency electromagnetic radiation.

8 . The carbon fiber textile of claim 1 , wherein the enhanced mechanical properties comprise the ability to bend without breaking.

9 . A carbon fiber textile with enhanced mechanical and electromagnetic properties comprising:

a plurality of carbon fibers aligned to form one or more tows of the carbon fibers;

a coating of silicone on the carbon fibers which electrically insulates the carbon fibers individually;

the one or more tows of polytetrafluoroethylene-coated carbon fibers are arranged to form a polytetrafluoroethylene-coated carbon fiber textile; and

the polytetrafluoroethylene-coated carbon fiber textile having sufficient resistivity of the aligned polytetrafluoroethylene-coated carbon fibers to attenuate radio frequency electromagnetic radiation.

10 . The carbon fiber textile of claim 9 , wherein the polytetrafluoroethylene-coated carbon fiber textile is incorporated into a quilted textile.

11 . The carbon fiber textile of claim 10 , wherein the quilted textile comprises the polytetrafluoroethylene-coated carbon fiber textile with at least one conductive layer.

12 . The carbon fiber textile of claim 11 , wherein the conductive layer is comprised of a metallic layer.

13 . The carbon fiber textile of claim 11 , wherein the conductive layer is comprised of a textile containing conductive threads.

14 . The carbon fiber textile of claim 9 , wherein the polytetrafluoroethylene-coated carbon fiber textile is arranged in a laminate with at least one metal layer.

15 . The carbon fiber textile of claim 9 , wherein the polytetrafluoroethylene-coated carbon fiber textile is between at least two layers of conductive textile.

16 . A method for forming a carbon fiber textile with enhanced electromagnetic and mechanical properties, comprising:

aligning a plurality of carbon fibers to form one or more tows of the carbon fibers;

coating the carbon fibers with polytetrafluoroethylene which electrically insulates the carbon fibers individually;

arranging one or more tows of the polytetrafluoroethylene-coated carbon fibers to form a polytetrafluoroethylene-coated carbon fiber textile; and

the polytetrafluoroethylene-coated carbon fiber textile having sufficient resistivity of the aligned silicone-coated carbon fibers to attenuate radio frequency electromagnetic radiation.

17 . The method of claim 16 , further comprising the polytetrafluoroethylene-coated carbon fiber textile having a specific sheet resistance of less than or equal to 1.0 ohms per centimeter squared and an increased tolerance for bending around a radius.

18 . The method of claim 16 , further comprising the polytetrafluoroethylene-coated carbon fiber textile having a specific sheet resistance of 1.0 ohms per centimeter squared along the aligned, polytetrafluoroethylene-coated carbon fibers.

19 . The method of claim 16 , further comprising coating the carbon fibers with polytetrafluoroethylene by at least one of the following methods: spray, brush, and immersion.

20 . The method of claim 19 , further comprising treating polytetrafluoroethylene-coated carbon fibers by compaction or sintering.

21 . The method of claim 16 , further comprising incorporating the polytetrafluoroethylene-coated carbon fiber textile into a quilted textile.

22 . The method of claim 16 , further comprising joining the polytetrafluoroethylene-coated carbon fiber textile to a conductive layer.

23 . The carbon fiber textile of claim 16 , further comprising forming a laminate incorporating the polytetrafluoroethylene-coated carbon fiber textile.

Assignments (2)
SECURITY INTEREST Recorded Dec 29, 2014
From: TANGITEK, LLC; DONEKER, ROBERT L.
To: MARGER JOHNSON & MCCOLLOM, P.C.
Reel/Frame 034595/0656 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 15, 2014
From: DONEKER, ROBERT L.; THOMPSON, KENT G.R.
To: TANGITEK, LLC
Reel/Frame 032905/0471 →