IP Library Granted Patent US 11,235,293
Granted Patent B2
US 11,235,293 · App. 16/207,752 · Granted Feb 1, 2022

Material wetting system with shroud assembly

Inventors: Daniel Davis Anderson (Eagan, MN); Brock Stephen Mueggenborg (St. Paul, MN); Karl Heinbuch (Roberts, WI); David W. Scheimann (Joliet, IL); Alex Bodga (Ballston Spa, NY); Thomas E. Peacock (Elburn, IL)
Assignee: Ecolab USA Inc.
B01F5/043B01F3/12B01F3/1228B01F3/1271B01F5/0065B01F5/0498B01F5/248B01F15/00961B01F15/00974B01F15/0235B01F15/0243B01F2215/0049
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Quick Facts
Patent No.
US 11,235,293
App. No.
16/207,752
Granted
Feb 1, 2022
Kind
B2
Abstract

A material wetting system for wetting a powder material includes a liquid supply system, a material mixing unit, a material supply system, and a shroud assembly. The liquid supply system includes a supply line. The material mixing unit is in fluid communication with the supply line and includes a central cavity having an open upper end configured to receive a supply of powder material. The material mixing unit is configured to receive liquid from the supply line and is operatively connected to a reduced pressure source to draw air into the central cavity. The material supply system includes an orifice and is configured to feed powder material through the orifice, with the orifice disposed above the central cavity of the material mixing unit. The shroud assembly is disposed about the open upper end of the central cavity of the material mixing unit and the orifice of the material supply system.

Claims (28)

1. A material wetting system for wetting a powder material, the system comprising:

a liquid supply system including a supply line configured to provide a liquid;

a material mixing unit in fluid communication with the supply line, the material mixing unit including a central cavity having an open upper end configured to receive a supply of powder material, the supply line opening into the material mixing unit whereby the liquid from the supply line flows directly into the material mixing unit, the material mixing unit being operatively connected to a reduced pressure source to draw air into the central cavity;

a material supply system including an orifice and being configured to feed powder material through the orifice, the orifice being disposed above the central cavity of the material mixing unit; and

a shroud assembly disposed about the open upper end of the central cavity of the material mixing unit and the orifice of the material supply system.

2. The material wetting system of claim 1 , wherein the shroud assembly substantially seals an area surrounding the orifice of the material supply system and the open upper end of the central cavity of the material mixing unit.

3. The material wetting system of claim 2 , wherein the shroud assembly also substantially seals an area extending downward a predetermined distance from the open upper end of the central cavity of the material mixing unit.

4. The material wetting system of claim 1 , wherein the shroud assembly comprises a pair of spaced apart sidewalls, a front wall, and a top wall, the front wall and the top wall extending between the sidewalls.

5. The material wetting system of claim 4 , wherein the shroud assembly comprises a rear shroud opposite the front wall and extending between the sidewalls.

6. The material wetting system of claim 5 , wherein the liquid supply system comprises a booster pump and the rear shroud is disposed between the booster pump and the material mixing unit to block airflow from the booster pump.

7. The material wetting system of claim 4 , wherein the shroud assembly further comprises a plate below the material mixing unit, the plate extending between the sidewalls.

8. The material wetting system of claim 1 , wherein the material mixing unit comprises a central axis extending through the central cavity and the orifice is disposed along the central axis.

9. The material wetting system of claim 1 , wherein the central cavity is in fluid communication with an outlet line from which a mixture of liquid and powder material exits the central cavity.

10. The material wetting system of claim 9 , wherein the liquid supply system comprises a second supply line fluidly connected to the material mixing unit to define the reduced pressure source.

11. The material wetting system of claim 10 , wherein the second supply line is fluidly connected to the outlet line to central cavity to define the reduced pressure source.

12. The material wetting system of claim 11 , wherein the second supply line is fluidly connected to the outlet line to mix the mixture of liquid and powder material exiting the outlet line with liquid from the second supply line.

13. The material wetting system of claim 1 , wherein the material mixing unit comprises an eductor.

14. A material wetting system for wetting a powder material, the system comprising:

a liquid supply system including a supply line configured to provide a liquid, the liquid supply system including a booster pump;

an eductor in fluid communication with the supply line, the eductor including a central cavity having a central axis and an open upper end configured to receive a supply of powder material, the eductor being configured to receive the liquid from the supply line, the eductor being operatively connected to a reduced pressure source to draw air into the central cavity;

a material supply system including an orifice and being configured to feed powder material through the orifice, the orifice being disposed along the central axis and above the central cavity of the eductor; and

a shroud assembly disposed about the open upper end of the central cavity of the eductor and the orifice of the material supply system, the shroud assembly including a wall disposed between the booster pump and the educator to block airflow from the booster pump.

15. The material wetting system of claim 14 , wherein the shroud assembly substantially seals an area surrounding the orifice of the material supply system and the open upper end of the central cavity of the eductor.

16. The material wetting system of claim 15 , wherein the shroud assembly also substantially seals an area extending downward a predetermined distance from the open upper end of the central cavity of the eductor.

17. The material wetting system of claim 14 , wherein the shroud assembly comprises a pair of spaced apart sidewalls, a front wall, and a top wall, the front wall and the top wall extending between the sidewalls.

18. The material wetting system of claim 17 , wherein the shroud assembly comprises a rear shroud opposite the front wall and extending between the sidewalls.

19. The material wetting system of claim 18 , wherein the rear shroud is disposed between the booster pump and the eductor to block airflow from the booster pump.

20. The material wetting system of claim 14 , wherein the central cavity is in fluid communication with an outlet line from which a mixture of liquid and powder material exits the central cavity.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 3, 2018
From: ANDERSON, DANIEL DAVIS; MUEGGENBORG, BROCK STEPHEN; HEINBUCH, KARL; SCHEIMANN, DAVID W.; BOGDA, ALEX; PEACOCK, THOMAS E.
To: ECOLAB USA INC.
Reel/Frame 047661/0215 →
Continuity (2)
Provisional Application 62594309 · Dec 4, 2017
Related Publication 20190168176A1 · Jun 6, 2019