IP Library Patent Application 13342346
Patent Application
App. No. 13/342,346

HEAT GENERATING ARTICLE AND METHOD OF MANUFACTURING SAME

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
13/342,346
Abstract

A method of manufacturing an article is provided. The method includes applying a coating onto a fabric layer, wherein the coating absorbs solar energy and converts solar energy into electrical energy. Moreover, the method includes applying a membrane onto the fabric layer. An insulation layer is applied onto the membrane. Further, a heat conductive coating is applied onto at least one of the membrane and the insulation layer.

Claims (39)

1 . A method of manufacturing an article, said method comprising:

applying a coating onto a fabric layer, wherein the coating absorbs solar energy and converts solar energy into electrical energy;

applying a membrane onto the fabric layer;

applying an insulation layer onto the membrane; and

applying a heat conductive coating onto at least one of the membrane and the insulation layer.

2 . A method in accordance with claim 1 further comprising coupling an energy storage device to the fabric layer.

3 . A method in accordance with claim 2 further comprising:

configuring the energy storage device to receive electrical energy from the coating on the fabric layer; and

configuring the energy storage device to transmit electrical energy to the heat conductive coating.

4 . A method in accordance with claim 1 , wherein said applying a coating onto the fabric layer further comprises applying the coating having a plurality of solar cells onto the fabric layer.

5 . A method in accordance with claim 1 , wherein said applying a heat conductive coating onto the membrane further comprises applying at least one of a metallic coating and a metal alloy coating onto the membrane.

6 . A method in accordance with claim 1 , wherein said applying a membrane onto the fabric layer further comprises applying a porous membrane onto the fabric layer.

7 . A method in accordance with claim 1 , wherein said applying a membrane onto the fabric layer further comprises applying an oleophobic expanded polytetrafluoroethylene (ePTFE) membrane onto the fabric layer.

8 . An article that selectively generates heat comprising:

a fabric layer;

a coating applied onto said fabric layer, said coating absorbs solar energy and converts solar energy into electrical energy;

a membrane applied onto said fabric layer;

an insulation layer applied onto said membrane; and

a heat conductive coating applied onto at least one of said membrane and said insulation layer, said heat conductive coating receives electrical energy and converts electrical energy into thermal energy.

9 . An article in accordance with claim 8 further comprising an energy storage device coupled to said fabric layer, wherein said energy storage device receives electrical energy from said coating on said fabric layer and said energy storage device transmits electrical energy to said heat conductive coating.

10 . An article in accordance with claim 8 , wherein said coating comprises a plurality of solar cells.

11 . An article in accordance with claim 8 , wherein said coating comprises a plurality of photovoltaic cells.

12 . An article in accordance with claim 8 , wherein said heat conductive coating comprises at least one of a metallic coating and a metal alloy coating.

13 . An article in accordance with claim 8 , wherein said membrane comprises a bi-component membrane.

14 . An article in accordance with claim 8 , wherein said membrane comprises a porous membrane, wherein said porous membrane is waterproof and breathable.

15 . An article in accordance with claim 8 , wherein said membrane comprises an oleophobic expanded polytetrafluoroethylene (ePTFE) membrane.

16 . An apparatus that selectively generates heat comprising:

at least one substrate layer;

an article configured to selectively generate heat overlaying said at least one substrate layer, wherein said article comprises:

a fabric layer;

a coating applied onto said fabric layer, said coating absorbs solar energy and converts solar energy into electrical energy;

a membrane applied onto said fabric layer;

an insulation layer applied onto said membrane;

a heat conductive coating applied onto at least one of said membrane and said insulation layer, said heat conductive coating receives electrical energy and converts electrical energy into thermal energy; and

an energy storage device coupled to said article.

17 . An apparatus in accordance with claim 16 , wherein said coating comprises a plurality of solar cells.

18 . An apparatus in accordance with claim 16 , wherein said article further comprises a protective layer applied onto said fabric layer.

19 . An apparatus in accordance with claim 16 , wherein said heat conductive coating comprises at least one of a metallic coating and a metal alloy coating.

20 . An apparatus in accordance with claim 16 , wherein said membrane comprises an oleophobic expanded polytetrafluoroethylene (ePTFE) membrane.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2014
From: GENERAL ELECTRIC COMPANY; BHA GROUP, INC.; ALTAIR FILTER TECHNOLOGY LIMITED
To: BHA ALTAIR, LLC
Reel/Frame 031911/0797 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2012
From: SRIVASTAVA, REENA; JANAWITZ, JAMISON WILLIAM; ABUJOUDEH, TAHER MOUSA; BANSAL, VISHAL; HATFIELD, MARTIN GREGORY
To: GENERAL ELECTRIC COMPANY
Reel/Frame 027469/0558 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2012
From: MACMILLAN, GASTON JUSTICE
To: MOUNTAIN HARDWEAR, INC.
Reel/Frame 027469/0610 →