IP Library Granted Patent US 10,895,185
Granted Patent B2
US 10,895,185 · App. 15/204,598 · Granted Jan 19, 2021

Liquid delivery module, a method for assembling such a delivery module and a tank set comprising such a delivery module

Inventors: André Coutier (Champfromier, FR); Ludovic Minetto (Romans sur Isere, FR); Christophe Bondran (Saint Uze, FR); Matthieu Bardin (Chatuzange le Goubet, FR)
Assignee: AKWEL
F01N3/20F01N3/2066F01N3/2896F01N9/00F01N11/00F04B17/03F04B43/04F04B49/06F04B53/007F04B53/16F01N2610/02F01N2610/14F01N2610/144F01N2610/1406F01N2610/148F01N2610/1433F01N2900/1808F01N2900/1811F01N2900/1818Y02T10/12
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Quick Facts
Patent No.
US 10,895,185
App. No.
15/204,598
Granted
Jan 19, 2021
Kind
B2
Abstract

This delivery module includes: a pump for making the liquid flow; and an electronic circuit for controlling the pump. The delivery module further includes a channeling block having two channeling elements which define, when they are superimposed, channels for the liquid and which include: an inlet channel and an outlet channel.

Claims (31)

1. A delivery module, for delivering a liquid from a tank toward a downstream conduit in a motor vehicle, the delivery module comprising at least:

a pump configured to make the liquid flow from the tank toward the downstream conduit;

an electronic circuit connected to the pump and configured to control the pump;

a channeling block comprising two half channeling elements which are configured to define, when they are superimposed, at least two channels in which the liquid circulates, the channels including at least:

i) an inlet channel configured to channel the liquid toward the pump, and

ii) an outlet channel configured to channel the liquid coming out from the pump,

wherein the channeling block includes a fitting configured to fluidly connect an outlet of the delivery module to the downstream conduit and an inlet for fluidly connecting the delivery module to the tank, and

wherein one of the half channeling elements presents at least one cavity configured to define at least one of the channels, and wherein another half channeling element is configured to seal said cavity when the half channeling elements are superimposed, and

two joining members arranged so as to join the pump to the inlet channel so that the liquid can flow from the inlet channel toward the pump through a joining member and from the pump toward the outlet channel through a joining member.

2. The delivery module according to claim 1 , wherein each half channeling element has generally the shape of a plate.

3. The delivery module according to claim 1 , wherein at least one half channeling element is formed by a flat gasket having at least one opening defining one of the channels, the delivery module further comprising at least one retaining member configured to retain the flat gasket.

4. The delivery module according to claim 1 , wherein at least one half channeling element includes at least one protruding rim defining a closed contour.

5. The delivery module according to claim 1 , further comprising at least one valve, the channels including a channel configured to channel the liquid toward the valve.

6. The delivery module according to claim 5 , wherein the channel comprising the valve is configured to channel the liquid from the valve toward an accumulator.

7. The delivery module according to claim 1 , further comprising a hydraulic sensor configured to generate measurement signals which are representative of a characteristic property of the liquid, the electronic circuit being connected to the hydraulic sensor so as to receive the measurement signals, the channels including a measurement channel configured to channel the liquid toward the hydraulic sensor.

8. The delivery module according to claim 1 , wherein the pump comprises a primary connecting member, and wherein the electronic circuit comprises a secondary connecting member, the primary connecting member and the secondary connecting member being configured to be in contact when they are superimposed after superimposition along a superimposition direction, so that an electric current flows between the electronic circuit and the pump.

9. The delivery module according to claim 1 , wherein the pump is located between the electronic circuit and the channeling block.

10. The delivery module according to claim 1 , further comprising a guiding member configured to guide each half channeling element toward an assembled position.

11. The delivery module according to claim 1 , wherein the liquid is an aqueous urea solution.

12. The delivery module according to claim 2 , claim 1 , wherein both of the two half channeling elements each comprise weld beads arranged around the at least one cavity defining the at least one channel, wherein the weld beads seal the at least channel when the two half channeling elements are superimposed and facing weld beads are welded together.

13. The delivery module according to claim 1 , wherein the channeling block is located outside of the pump.

14. A delivery module, for delivering a liquid from a tank toward a downstream conduit in a motor vehicle, the delivery module comprising at least:

a pump configured to make the liquid flow from the tank toward the downstream conduit;

an electronic circuit connected to the pump and configured to control the pump;

a channeling block comprising two channeling elements which are configured to define, when they are superimposed, at least two channels in which the liquid circulates, the channels including at least:

i) an inlet channel configured to channel the liquid toward the pump, and

ii) an outlet channel configured to channel the liquid coming out from the pump;

wherein the channeling block includes a fitting configured to fluidly connect an outlet of the delivery module to the downstream conduit and an inlet for fluidly connecting the delivery module to the tank; and

two joining members arranged so as to join the pump to the inlet channel so that the liquid can flow from the inlet channel toward the pump through a joining member and from the pump toward the outlet channel through a joining member;

wherein one of the channeling elements presents at least one cavity configured to define at least one of the channels, and wherein another channeling element is configured to seal said cavity when the channeling elements are superimposed; and

wherein both of the two channeling elements each comprise weld beads arranged around the at least one cavity defining the at least one channel, wherein the weld beads seal the at least channel when the two channeling elements are superimposed and facing weld beads are weld together.

Assignments (5)
CHANGE OF NAME Recorded Nov 27, 2019
From: AKWEL SA
To: AKWEL
Reel/Frame 051132/0264 →
CORRECTIVE ASSIGNMENT TO CORRECT THE CITY OF THE ASSIGNEE PREVIOUSLY RECORDED ON REEL 047377 FRAME 0386. ASSIGNOR(S) HEREBY CONFIRMS THE CITY OF THE ASSIGNEE. Recorded Dec 14, 2018
From: MGI COUTIER
To: AKWEL SA
Reel/Frame 047889/0892 →
CHANGE OF NAME Recorded Oct 31, 2018
From: MGI COUTIER
To: AKWEL SA
Reel/Frame 047377/0386 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE'S ADDRESS PREVIOUSLY RECORDED ON REEL 039317 FRAME 0022. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Aug 9, 2016
From: COUTIER, ANDRÉ; MINETTO, LUDOVIC; BONDRAN, CHRISTOPHE; BARDIN, MATTHIEU
To: MGI COUTIER
Reel/Frame 039633/0931 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2016
From: COUTIER, ANDRÉ; MINETTO, LUDOVIC; BONDRAN, CHRISTOPHE; BARDIN, MATTHIEU
To: MGI COUTIER
Reel/Frame 039317/0022 →
Priority Claims (1)
FR 15 56611 · Jul 10, 2015 · national
Continuity (1)
Related Publication 20170009625A1 · Jan 12, 2017