IP Library Granted Patent US 10,139,130
Granted Patent B2
US 10,139,130 · App. 15/016,030 · Granted Nov 27, 2018

Urea tank and base plate with an integrated heating element

Inventors: Vincent Potier (Brussels, BE); Stéphane Leonard (Brussels, BE); Joël Op De Beeck (Lint, BE); François Dougnier (Boortmeerbeek, BE); Nadja Walling (Margny-les-Compiègne, FR); Larry Tipton (Sterling Heights, MI); Volodia Naydenov (Louvain-la-Neuve, BE)
Assignee: Plastic Omnium Advanced Innovation and Research
F24H1/202B60K13/04F01N3/2066F01N3/2896F24H1/185H05B3/0014H05B3/78B60K2015/03427F01N2610/02F01N2610/10F01N2610/1406F01N2610/1426Y02A50/2325Y02T10/24
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Quick Facts
Patent No.
US 10,139,130
App. No.
15/016,030
Granted
Nov 27, 2018
Kind
B2
Abstract

Urea tank and base plate with an integrated heating element in which the heating element comprising at least one resistive track affixed to one flexible film and/or placed between two flexible films.

Claims (26)

1. A urea tank comprising:

an integrated heating element comprising at least one flexible heating part which is a flexible heater comprising at least one resistive track placed between two flexible films made of plastic, and

a substantially cylindrical support including a plurality of openings,

wherein the flexible heater comprises a body and a plurality of excrescences that extend from the body and are equipped with at least one part of the resistive track, each of the excrescences passing through a respective one of the openings.

2. The urea tank according to claim 1 , wherein the plastic is polyolefin.

3. The urea tank according to claim 2 , wherein the polyolefin is polyethylene.

4. The urea tank according to claim 2 , wherein the polyolefin is polypropylene.

5. The urea tank according to claim 1 , wherein a flexural rigidity of the flexible films is such that the flexural rigidity, which is defined by (Eh 3 )/(12(1−ν 2 )), is below 4000 N·m, where E is Young's modulus of the flexible heating part measured according to ASTM D790-03 standard, h is a thickness of the flexible heating part, and ν is Poisson's ratio of a constituent material of the flexible heating part.

6. The urea tank according to claim 5 , wherein the flexural rigidity is less than or equal to 1000 N·m.

7. The urea tank according to claim 6 , wherein the flexural rigidity is less than or equal to 1 N·m.

8. The urea tank according to claim 2 , wherein a flexural rigidity of the flexible films is such that the flexural rigidity, which is defined by (Eh 3 )/(12(1−ν 2 )), is below 4000 N·m, where E is Young's modulus of the flexible heating part measured according to ASTM D790-03 standard, h is a thickness of the flexible heating part, and ν is Poisson's ratio of a constituent material of the flexible heating part.

9. The urea tank according to claim 8 , wherein the flexural rigidity is less than or equal to 1000 N·m.

10. The urea tank according to claim 9 , wherein the flexural rigidity is less than or equal to 1 N·m.

11. The urea tank according to claim 3 , wherein a flexural rigidity of the flexible films is such that the flexural rigidity, which is defined by (Eh 3 )/(12(1−ν 2 )), is below 4000 N·m, where E is Young's modulus of the flexible heating part measured according to ASTM D790-03 standard, h is a thickness of the flexible heating part, and ν is Poisson's ratio of a constituent material of the flexible heating part.

12. The urea tank according to claim 11 , wherein the flexural rigidity is less than or equal to 1000 N·m.

13. The urea tank according to claim 12 , wherein the flexural rigidity is less than or equal to 1 N·m.

14. The urea tank according to claim 1 , wherein the flexible heater comprises a plurality of resistive tracks connected in parallel in order to form a capacitive gauge to measure a level of urea in the tank.

15. The urea tank according to claim 2 , wherein the flexible heater comprises a plurality of resistive tracks connected in parallel.

16. The urea tank according to claim 3 , wherein the flexible heater comprises a plurality of resistive tracks connected in parallel.

17. The urea tank according to claim 1 , wherein an interior of the tank is sealed from an exterior by a base plate mounted on one end of the support.

18. The urea tank according to claim 17 , wherein the base plate further includes a delivery tube through which urea is supplied.

19. A urea tank comprising:

an integrated heating element comprising at least one flexible heating part which is a flexible heater comprising at least one resistive track placed between two flexible films made of plastic,

wherein the flexible heater comprises a body and at least one excrescence that extends from the body and is equipped with at least one part of the resistive track,

wherein an interior of the tank is sealed from an exterior by a base plate mounted adjacent the flexible heater, and

wherein the flexible heater is located inside the urea tank such that the body is submerged in the urea when the tank is full.

Assignments (2)
CHANGE OF NAME Recorded May 13, 2026
From: PLASTIC OMNIUM ADVANCED INNOVATION AND RESEARCH
To: OPMOBILITY C-POWER BELGIUM RESEARCH
Reel/Frame 075568/0954 →
CHANGE OF NAME Recorded Jul 13, 2018
From: INERGY AUTOMOTIVE SYSTEMS RESEARCH
To: PLASTIC OMNIUM ADVANCED INNOVATION AND RESEARCH
Reel/Frame 046550/0889 →
Priority Claims (2)
FR 07 55118 · May 16, 2007 · national
FR 07 56635 · Jul 20, 2007 · national
Continuity (3)
Continuation 14099080 · Dec 6, 2013
Continuation 12599478
Related Publication 20160195300A1 · Jul 7, 2016