IP Library Granted Patent US 10,876,662
Granted Patent B2
US 10,876,662 · App. 16/390,564 · Granted Dec 29, 2020

Corrugated heat protection tube and methods of making the same

Inventors: Christian Mueller (Olpe, DE); Burkhard Mertens (Balve, DE); Marc Philipp Weber (Iserlohn, DE)
Assignee: NOVELIS INC.
F16L11/125B32B1/08B32B3/28B32B5/024B32B7/12B32B15/043B32B15/14B32B15/20F16L33/01F16L57/04F16L59/145F16L59/153B32B2250/03B32B2255/02B32B2255/26B32B2262/101B32B2307/306B32B2307/584B32B2597/00B32B2605/00B32B2605/08B60R16/0215H02G3/0468
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Quick Facts
Patent No.
US 10,876,662
App. No.
16/390,564
Granted
Dec 29, 2020
Kind
B2
Abstract

Described herein are corrugated heat protection tubes and methods of making the same. The heat protection tubes have improved heat resistance, improved abrasion resistance, and minimize or eliminate worker exposure to glass fiber insulating materials. The corrugated heat protection tubes can be used in automotive, transportation, and industrial applications, just to name a few.

Claims (25)

1. A corrugated heat protection tube comprising:

an outer layer comprising aluminum and having an outer surface and an inner surface; and

an inner composite layer comprising an aluminum layer and a glass fiber layer, wherein the aluminum layer and the glass fiber layer are laminated together;

wherein the aluminum layer of the inner composite layer is bonded to the inner surface of the outer layer; and

wherein the glass fiber layer of the inner composite layer defines an interior space of the corrugated heat protection tube and wherein the glass fiber layer is at least partially coated with a polymer coating, and

wherein the corrugated heat protection tube comprises from about 300 to about 1250 corrugations per meter.

2. The corrugated heat protection tube of claim 1 , wherein the corrugated heat protection tube comprises an outer diameter from about 8 to about 60 millimeters.

3. The corrugated heat protection tube of claim 1 , wherein the corrugated heat protection tube comprises an outer diameter from about 60 to about 120 millimeters.

4. The corrugated heat protection tube of claim 1 , wherein the corrugated heat protection tube receives a radial static load of at least about 289 Newtons per 100 millimeters without deformation after being stored at a temperature of from about −40° C. to about 250° C. for up to 100 hours.

5. The corrugated heat protection tube of claim 1 , wherein the corrugated heat protection tube receives a radial static load of at least about 229 Newtons per 100 millimeters without deforming after being stored at a temperature from about −40° C. to about 250° C. for up to 100 hours.

6. The corrugated heat protection tube of claim 1 , wherein the corrugated heat protection tube comprises an overlaid winding, and wherein the overlaid winding shows no separation after being stored at a temperature from about −40° C. to about 250° C. for up to 100 hours.

7. The corrugated heat protection tube of claim 1 , wherein the corrugated heat protection tube shows no lamination separation after being stored at a temperature from about −40° C. to about 250° C. for up to 100 hours.

8. The corrugated heat protection tube of claim 1 , wherein the corrugated heat protection tube comprises an inner diameter, and is bent at a radius of at least 1.5 times the inner diameter without visible damage after being stored at a temperature from about −40° C. to about 250° C. for up to 100 hours.

9. The corrugated heat protection tube of claim 1 , wherein the polymer coating forms an innermost layer of the corrugated heat protection tube.

10. A corrugated heat protection tube comprising:

an overlaid laminate ribbon comprising an aluminum layer and a glass fiber layer and defining an interior space,

wherein the glass fiber layer is at least partially coated with a polymer coating,

wherein the polymer coating forms an innermost layer of the corrugated heat protection tube,

wherein the overlaid laminate ribbon has an overlaid winding of from about 0.5 to about 10 percent, and

wherein the corrugated heat protection tube further comprises an outer layer comprising an overlaid aluminum ribbon.

11. The corrugated heat protection tube of claim 10 , wherein the overlaid aluminum ribbon has an overlaid winding of from about 0.5 to about 10 percent.

12. The corrugated heat protection tube of claim 11 , wherein the overlaid winding of the overlaid laminate ribbon and the overlaid winding of the overlaid aluminum ribbon have the same percent overlap.

13. The corrugated heat protection tube of claim 11 , wherein the overlaid winding of the overlaid laminate ribbon and the overlaid winding of the overlaid aluminum ribbon have different percent overlap.

14. The corrugated heat protection tube of claim 10 , wherein the corrugated heat protection tube provides an internal temperature measured in the interior space of no greater than 65° C. for at least one hour when measured according to the heat protection test method.

15. The corrugated heat protection tube of claim 10 , wherein the corrugated heat protection tube shows no separation of aluminum ribbon overlaid winding after being stored at a temperature from about −40° C. to about 250° C. for up to 100 hours.

Assignments (3)
SECURITY INTEREST Recorded Mar 12, 2025
From: NOVELIS INC.; NOVELIS DEUTSCHLAND GMBH; NOVELIS KOBLENZ GMBH
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 070495/0110 →
SECURITY INTEREST Recorded Mar 11, 2025
From: NOVELIS DEUTSCHLAND GMBH; NOVELIS INC.; NOVELIS KOBLENZ GMBH
To: CITIBANK, N.A.
Reel/Frame 070481/0417 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 23, 2019
From: MUELLER, CHRISTIAN; MERTENS, BURKHARD; WEBER, MARC PHILIPP
To: NOVELIS INC.
Reel/Frame 048971/0175 →