IP Library › Granted Patent US 11,867,345
Granted Patent B2
US 11,867,345 · App. 17/284,809 · Granted Jan 9, 2024

Insulation material

Inventors: Lucas Smout (Brasschaat, BE); Rudi Diepvens (Hechtel-Eksel, BE); Steven R. Badger (Pittsburgh, PA); Joseph Van Loo (Ronse, BE)
Assignee: PITTSBURGH CORNING EUROPE NV
F16L59/07B32B1/08B32B3/30B32B15/04B32B15/18F16L59/024F16L59/12B32B2307/304B32B2307/536B32B2597/00
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Quick Facts
Patent No.
US 11,867,345
App. No.
17/284,809
Granted
Jan 9, 2024
Kind
B2
Abstract

An insulation material comprising an insulation material substrate with a substrate surface, the insulation material further having a plurality of protrusions affixed to or integrated into substrate surface, each protrusion having an abutting surface distal to a protrusion base and a protrusion body connecting the abutting surface and the protrusion base, and each protrusion having an abutting surface height of at least 2 mm, wherein the abutting surface height is the shortest distance between the plane of the abutting surface and the plane of the protrusion base.

Claims (36)

1. An insulation material comprising an insulation material substrate with a substrate surface, the insulation material further having a plurality of protrusions affixed to or integrated into the substrate surface, each protrusion having an abutting surface distal to a protrusion base and a protrusion body connecting the abutting surface and the protrusion base, and each protrusion having an abutting surface height of at least 2 mm, wherein the abutting surface height is the shortest distance between the plane of the abutting surface and the plane of the protrusion base, wherein the protrusion body is comprised of a polymer, elastomer or rubber material, and wherein the protrusion body is comprised of a material having a Shore A hardness in the range of 30 to 50.

2. The insulation material according to claim 1 wherein the insulation material substrate includes cellular glass.

3. The insulation material according to claim 1 wherein the insulation material substrate has a hollow half-pipe shape.

4. The insulation material according to claim 1 wherein the abutting surface height is in the range of 5 to 15 mm.

5. The insulation material according to claim 1 wherein the abutting surface and the protrusion base form opposing faces of the protrusion body.

6. An insulation material comprising an insulation material substrate with a substrate surface, the insulation material further having a plurality of protrusions affixed to or integrated into the substrate surface, each protrusion having an abutting surface distal to a protrusion base and a protrusion body connecting the abutting surface and the protrusion base, and each protrusion having an abutting surface height of at least 2 mm, wherein the abutting surface height is the shortest distance between the plane of the abutting surface and the plane of the protrusion base, and wherein the protrusion body is comprised of silicone rubber.

7. The insulation material according to claim 1 wherein the surface area of the abutting surface is less than the surface area of the protrusion base and a side wall or side walls of the protrusion body taper from the protrusion base to the abutting surface at an angle between 105 to 135° with respect to the plane of the abutting surface.

8. The insulation material according to claim 1 wherein the protrusions are arranged in an array on the substrate surface and the density of protrusions on the substrate surface of the insulation material substrate is in the range of 1 protrusion per 4,000 to 40,000 mm 2 .

9. An insulated component comprising a component with a corrodible outer surface and an insulation material according to claim 1 , wherein the abutting surface of the protrusions of the insulation material abut the corrodible outer surface of the component to provide an air gap of at least 2 mm between the corrodible outer surface and the substrate surface of the insulation material substrate.

10. The insulated component according to claim 9 wherein the component is a pipe with a steel outer surface.

11. A method for producing an insulation material, wherein the method comprises the following steps:

a. providing an insulation material substrate with a substrate surface; and

b. affixing a plurality of protrusions to the substrate surface, each protrusion having an abutting surface distal to a protrusion base and a protrusion body connecting the abutting surface and the protrusion base, the protrusion base of each protrusion being affixed to the substrate surface, and each protrusion having an abutting surface height of at least 2 mm, wherein the abutting surface height is the shortest distance between the plane of the abutting surface and the plane of the protrusion base, wherein the protrusion body is comprised of a polymer, elastomer or rubber material, and wherein the protrusion body is comprised of a material having a Shore A hardness in the range of 30 to 50.

12. A method of insulating a component, the method comprising providing a component with a corrodible outer surface and positioning an insulation material to an outer surface of the component; the insulation material comprising:

an insulation material substrate with a substrate surface, the insulation material further having a plurality of protrusions affixed to or integrated into the substrate surface, each protrusion having an abutting surface distal to a protrusion base and a protrusion body connecting the abutting surface and the protrusion base, and each protrusion having an abutting surface height of at least 2 mm, wherein the abutting surface height is the shortest distance between the plane of the abutting surface and the plane of the protrusion base, wherein the protrusion body is comprised of a polymer, elastomer or rubber material, and wherein the protrusion body is comprised of a material having a Shore A hardness in the range of 30 to 50.

13. The method according to claim 12 , wherein the insulation material substrate includes cellular glass.

14. The insulation material according to claim 13 , wherein the insulation material substrate has a hollow half-pipe shape.

15. The insulation material according to claim 14 wherein the abutting surface height is in the range of 5 to 15 mm.

16. The insulation material according to claim 15 wherein the abutting surface and the protrusion base form opposing faces of the protrusion body.

17. The insulation material according to claim 6 wherein the insulation material substrate includes cellular glass.

18. The insulation material according to claim 6 wherein the insulation material substrate has a hollow half-pipe shape.

19. The insulation material according to claim 6 wherein the abutting surface height is in the range of 5 to 15 mm.

20. The insulation material according to claim 6 wherein the abutting surface and the protrusion base form opposing faces of the protrusion body.

21. The insulation material according to claim 6 wherein the surface area of the abutting surface is less than the surface area of the protrusion base and a side wall or side walls of the protrusion body taper from the protrusion base to the abutting surface at an angle between 105 to 135° with respect to the plane of the abutting surface.

22. The insulation material according to claim 6 wherein the protrusions are arranged in an array on the substrate surface and the density of protrusions on the substrate surface of the insulation material substrate is in the range of 1 protrusion per 4,000 to 40,000 mm 2 .

23. An insulated component comprising a component with a corrodible outer surface and an insulation material according to claim 6 , wherein the abutting surface of the protrusions of the insulation material abut the corrodible outer surface of the component to provide an air gap of at least 2 mm between the corrodible outer surface and the substrate surface of the insulation material substrate.

24. The insulated component according to claim 23 wherein the component is a pipe with a steel outer surface.

25. A method for producing an insulation material, wherein the method comprises the following steps:

a. providing an insulation material substrate with a substrate surface; and

b. affixing a plurality of protrusions to the substrate surface, each protrusion having an abutting surface distal to a protrusion base and a protrusion body connecting the abutting surface and the protrusion base, the protrusion base of each protrusion being affixed to the substrate surface, and each protrusion having an abutting surface height of at least 2 mm, wherein the abutting surface height is the shortest distance between the plane of the abutting surface and the plane of the protrusion base, and wherein the protrusion body is comprised of silicone rubber.

26. A method of insulating a component, the method comprising providing a component with a corrodible outer surface and positioning an insulation material to an outer surface of the component; the insulation material comprising:

an insulation material substrate with a substrate surface, the insulation material further having a plurality of protrusions affixed to or integrated into the substrate surface, each protrusion having an abutting surface distal to a protrusion base and a protrusion body connecting the abutting surface and the protrusion base, and each protrusion having an abutting surface height of at least 2 mm, wherein the abutting surface height is the shortest distance between the plane of the abutting surface and the plane of the protrusion base, and wherein the protrusion body is comprised of silicone rubber.

27. The method according to claim 26 , wherein the insulation material substrate includes cellular glass.

28. The insulation material according to claim 27 , wherein the insulation material substrate has a hollow half-pipe shape.

29. The insulation material according to claim 28 wherein the abutting surface height is in the range of 5 to 15 mm.

30. The insulation material according to claim 29 wherein the abutting surface and the protrusion base form opposing faces of the protrusion body.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2023
From: BADGER, STEVEN R.; VAN LOO, JOSEPH
To: PITTSBURGH CORNING EUROPE NV
Reel/Frame 064282/0808 →
EMPLOYMENT AGREEMENT Recorded Dec 29, 2021
From: SMOUT, LUCAS
To: PITTSBURGH CORNING EUROPE NV
Reel/Frame 058598/0785 →
EMPLOYMENT AGREEMENT Recorded Dec 29, 2021
From: DIEPVENS, RUDI
To: PITTSBURGH CORNING EUROPE NV
Reel/Frame 058598/0808 →
Priority Claims (1)
EP 18200982 · Oct 17, 2018 · regional
Continuity (1)
Related Publication 20210388937A1 · Dec 16, 2021