IP Library Patent Application 17712851
Patent Application
App. No. 17/712,851

FIRE SUPPRESSION DEVICE

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Quick Facts
Patent No.
US None
App. No.
17/712,851
Abstract

The disclosed technology includes a fire suppression device including a non-conductive support layer and an intumescent coating. The non-conductive support layer can include a plurality of non-conductive strands arranged to form a plurality of apertures. The intumescent coating can be disposed on at least a portion of the plurality of non-conductive strands. The intumescent coating can be configured to expand to at least partially close a portion of the plurality of apertures upon the intumescent coating being heated to a temperature greater than or equal to a threshold temperature.

Claims (28)

1 . A fire suppression device comprising:

a non-conductive support layer including a plurality of non-conductive strands arranged to form a plurality of apertures: and

an intumescent coating disposed on at least a portion of the plurality of non-conductive strands, the intumescent coating configured to expand to at least partially close a portion of the plurality of apertures upon the intumescent coating being heated to a temperature greater than or equal to a threshold temperature.

2 . The fire suppression device of claim 1 , wherein the plurality of non-conductive strands comprises basalt fiber.

3 . The fire suppression device of claim 1 , wherein the plurality of non-conductive strands comprises at least one of carbon fiber, glass fiber, aramid, fiberglass, and quartz fiber.

4 . The fire suppression device of claim 1 , wherein the plurality of non-conductive strands comprises a first non-conductive composition and a second non-conductive composition, the first non-conductive composition being different than the second non-conductive composition.

5 . The fire suppression device of claim 1 , wherein each aperture of the plurality of apertures has a predetermined height and a predetermined width, the predetermined height being between approximately 3.25 mm and approximately 4.75 mm and the predetermined width being between approximately 3.25 mm and approximately 4.75 mm.

6 . The fire suppression device of claim 1 , wherein a predetermined amount of intumescent coating is disposed on at least a portion of the plurality of non-conductive strands, the predetermined amount being between approximately 0.08 and approximately 0.20 pounds per square foot of the support layer.

7 . The fire suppression device of claim 1 , wherein the intumescent coating comprises a temperature-sensitive pigment configured to change color upon the intumescent coating being heated to the temperature greater than or equal to the threshold temperature.

8 . The fire suppression device of claim 1 , wherein the threshold temperature is between approximately 280° F. and approximately 300° F.

9 . The fire suppression device of claim 1 , wherein the intumescent coating expands to form a char layer of a predetermined thickness, the predetermined thickness being between approximately 10 mm and approximately 30 mm.

10 . The fire suppression device of claim 1 , wherein the intumescent coating expands (i) outwardly toward a source of heat: (ii) inwardly away from the source of heat: and (iii) laterally to at least partially close at least a portion of the plurality of apertures.

11 . A method of manufacturing a fire suppression device comprising:

providing a plurality of non-conductive strands forming a plurality of apertures; and

applying an intumescent coating on at least a portion of the plurality of non-conductive strands, the intumescent coating configured to expand to at least partially close a portion of the plurality of apertures upon the intumescent coating being heated to a temperature greater than or equal to a threshold temperature.

12 . The method of claim 11 , wherein providing the plurality of non-conductive strands comprises weaving the plurality of non-conductive strands together to form a mesh-like configuration.

13 . The method of claim 11 , wherein a predetermined amount of intumescent coating is applied to at least a portion of the plurality of non-conductive strands, the predetermined amount of intumescent coating being between approximately 0.08 pounds per square foot to approximately 0.20 pounds per square foot.

14 . The method of claim 11 , wherein a predetermined amount of intumescent coating is applied to at least a portion of the plurality of non-conductive strands, the predetermined amount of intumescent coating being based at least in part on an estimated magnitude of fires expected to occur at a location in which the fire suppression device is used.

15 . The method of claim 11 , further comprising curing the intumescent coating applied to at least the portion of the plurality of non-conductive strands at a temperature below a boiling point of the intumescent coating.

16 . A fire suppression system comprising:

a structure; and

a fire suppression device affixed to at least a portion of the structure, the tire suppression device comprising:

a non-conductive support layer including a plurality of non-conductive strands arranged to form a plurality of apertures; and

an intumescent coating disposed on at least a portion of the plurality of non-conductive strands, the intumescent coating configured to expand to at least partially close a portion of the plurality of apertures upon the intumescent coating being heated to a temperature greater than or equal to a threshold temperature.

17 . The tire suppression system of claim 16 , wherein the structure is a wooden utility pole.

18 . The fire suppression system of claim 16 , wherein the tire suppression device is wrapped around the structure to conform to the shape of the structure.

19 . The tire suppression system of claim 16 , wherein each aperture of the plurality of apertures is sized to allow for water moisture to permeate into the structure and out of the structure.

20 . The fire suppression system of claim 16 , wherein the intumescent coating expands (i) outwardly away from the structure: (ii) inwardly toward the structure: and (iii) laterally to at least partially close at least a portion of the plurality of apertures.

Assignments (3)
SECURITY INTEREST Recorded May 20, 2026
From: OSMOSE UTILITIES SERVICES, INC.
To: SOCIÉTÉ GÉNÉRALE, AS AGENT
Reel/Frame 074709/0149 →
SECURITY INTEREST Recorded May 20, 2026
From: OSMOSE UTILITIES SERVICES, INC.
To: ARES CAPITAL CORPORATION, AS COLLATERAL AGENT
Reel/Frame 074713/0696 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 5, 2022
From: HERDMAN, DOUGLAS; BATCHELOR, ROBERT
To: OSMOSE UTILITIES SERVICES, INC.
Reel/Frame 059499/0329 →