IP Library Granted Patent US 10,703,588
Granted Patent B1
US 10,703,588 · App. 15/961,021 · Granted Jul 7, 2020

Bin sweep system with particle agglomeration breakup capability

Inventors: Michael Schram (Plattsmouth, NE); Jon Duesterhoeft (Sioux Falls, SD)
Assignee: Sioux Steel Company
B65G65/42
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Quick Facts
Patent No.
US 10,703,588
App. No.
15/961,021
Granted
Jul 7, 2020
Kind
B1
Abstract

A bin sweep system for moving particulate matter across a floor surface of a bin may include a sweep assembly positionable on the floor surface of the bin and movable across the floor surface. The sweep assembly has an inboard end for locating toward to a central area of the bin and an outboard end for locating toward a peripheral area of the bin, and a forward side oriented toward a direction of movement for orienting toward particulate matter to be moved. The system may also include a particle agglomeration breakup assembly configured to expel a fluid adjacent to the sweep assembly to impact particulate matter located adjacent to the forward side of the sweep assembly and facilitate breakup of any particle agglomerations positioned forwardly of the sweep assembly.

Claims (31)

1. A bin sweep system for moving particulate matter across a floor surface of a bin, the system comprising:

a sweep assembly positionable on the floor surface of the bin and movable across the floor surface, the sweep assembly having an inboard end for locating toward to a central area of the bin and an outboard end for locating toward a peripheral area of the bin and a longitudinal length between the inboard and outboard ends, the sweep assembly having a forward side oriented toward a direction of forward movement of the sweep assembly with respect to the floor surface to engage particulate matter to be moved by the sweep assembly; and

a particle agglomeration breakup assembly mounted on the sweep assembly to move with the sweep assembly across the floor surface of the bin, the particle agglomeration assembly including a plurality of nozzles positioned on the sweep assembly at longitudinally spaced locations along the longitudinal length of the sweep assembly between the inboard and outboard ends to distribute an influence of the nozzles along the length of the sweep assembly, each nozzle of the plurality of nozzles being oriented on the sweep assembly to expel a fluid adjacent to the forward side of the sweep assembly along the longitudinal length of the sweep assembly to impact particulate matter located adjacent to the forward side of the sweep assembly at the positions of the nozzles along the longitudinal length of the sweep assembly and thereby facilitate breakup of any particle agglomerations positioned forwardly of the sweep assembly.

2. The system of claim 1 wherein the particle agglomeration breakup assembly is configured to expel a gas adjacent to the sweep assembly to impact particulate material.

3. The system of claim 1 wherein each nozzle of the plurality of nozzles is directed forwardly with respect to the forward side of the sweep assembly such that fluid flow from the nozzle is capable of impacting particles positioned forwardly of the sweep assembly.

4. The system of claim 3 wherein each nozzle of the plurality of nozzles is directed downwardly with respect to the sweep assembly such that fluid flow from the nozzle moves downwardly from the nozzle.

5. The system of claim 1 wherein the particle agglomeration breakup assembly includes a conduit system connected to the plurality of nozzles to provide a fluid to the nozzles.

6. The system of claim 5 wherein the particle agglomeration breakup assembly includes a fluid source configured to provide fluid to the conduit system and the plurality of nozzles.

7. The system of claim 1 wherein each nozzle of the plurality of nozzles has a spray pattern of flow from the nozzle, the spray pattern being a fan pattern.

8. The system of claim 7 wherein the nozzles are positioned on the sweep assembly sufficiently close to each other such that the fan patterns of adjacent nozzles in the array produce a degree of overlap of the fan patterns of the respective nozzles.

9. A bin sweep system for moving particulate matter across a floor surface of a bin, the system comprising:

a sweep assembly positionable on the floor surface of the bin and movable across the floor surface, the sweep assembly having an inboard end for locating toward to a central area of the bin and an outboard end for locating toward a peripheral area of the bin, the sweep assembly having a forward side oriented toward a direction of forward movement of the sweep assembly with respect to the floor surface to engage particulate matter to be moved, the sweep assembly including a plurality of interconnected paddles movable in a succession on a path along at least a portion of the sweep assembly between the inboard and outboard ends, the plurality of paddles being mounted on an endless loop member at spaced locations along the endless loop;

a particle agglomeration breakup assembly including at least one nozzle positioned on the sweep assembly to expel a fluid adjacent to the forward side of the sweep assembly to impact particulate matter located adjacent to the forward side of the sweep assembly and facilitate breakup of any particle agglomerations positioned forwardly of the sweep assembly; and

wherein the at least one nozzle has a spray pattern of flow from the nozzle, the spray pattern being a fan pattern.

10. The system of claim 9 wherein the particle agglomeration breakup assembly is configured to expel a gas adjacent to the sweep assembly to impact particulate material.

11. The system of claim 9 wherein the particle agglomeration breakup assembly is mounted on the sweep assembly to move with the sweep assembly.

12. The system of claim 9 wherein the at least one nozzle is directed forwardly with respect to the sweep assembly such that fluid flow from the nozzle is capable of impacting particles positioned forwardly of the sweep assembly.

13. The system of claim 12 wherein the at least one nozzle is directed downwardly with respect to the sweep assembly such that fluid flow from the nozzle moves downwardly from the nozzle.

14. The system of claim 12 wherein the at least one nozzle comprises a plurality of nozzles on the sweep, the nozzles of the plurality of nozzles being spaced from each other in a longitudinal direction of the sweep assembly between the inboard end and the outboard end of the sweep assembly.

15. The system of claim 14 wherein the particle agglomeration breakup assembly includes a conduit system connected to the plurality of nozzles to provide a fluid to the nozzles.

16. The system of claim 15 wherein the particle agglomeration breakup assembly includes a fluid source configured to provide fluid to the conduit system and the plurality of nozzles.

17. The system of claim 9 wherein the at least one nozzle comprises a plurality of nozzles on the sweep spaced from each other in a longitudinal direction of the sweep assembly, the nozzles being positioned on the sweep assembly sufficiently close to each other such that the fan patterns of adjacent nozzles in the array produce a degree of overlap of the fan patterns of the respective nozzles.

18. A bin sweep system for moving particulate matter across a floor surface of a bin, the system comprising:

a sweep assembly positionable on the floor surface of the bin and movable across the floor surface, the sweep assembly having an inboard end for locating toward to a central area of the bin and an outboard end for locating toward a peripheral area of the bin, the sweep assembly having a forward side oriented toward a direction of movement for orienting toward particulate matter to be moved; and

a particle agglomeration breakup assembly configured to expel a fluid adjacent to the sweep assembly to impact particulate matter located adjacent to the forward side of the sweep assembly and facilitate breakup of any particle agglomerations positioned forwardly of the sweep assembly;

wherein the particle agglomeration breakup assembly includes at least one nozzle directed forwardly with respect to the sweep assembly such that fluid flow from the nozzle is capable of impacting particles positioned forwardly of the sweep assembly;

wherein the at least one nozzle comprises a plurality of nozzles on the sweep, the nozzles of the plurality of nozzles being spaced from each other in a longitudinal direction of the sweep assembly between the inboard end and the outboard end of the sweep assembly;

wherein the particle agglomeration breakup assembly includes a conduit system connected to the plurality of nozzles to provide a fluid to the nozzles; and

wherein each of the nozzles has a spray pattern of flow from the nozzle, the spray pattern being a fan pattern.

19. The system of claim 18 wherein the particle agglomeration breakup assembly is mounted on the sweep assembly to move with the sweep assembly.

20. The system of claim 18 wherein the nozzles are positioned on the sweep assembly sufficiently close to each other such that the fan patterns of adjacent nozzles in the array produce a degree of overlap of the fan patterns of the respective nozzles.

Assignments (2)
SECURITY INTEREST Recorded Mar 18, 2022
From: SIOUX STEEL COMPANY; UNIT LINER COMPANY; AGRISPHERE SERVICES, LLC; PIVOTROCK HOLDINGS, LLC
To: CIBC BANK USA
Reel/Frame 059314/0717 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2018
From: SCHRAM, MICHAEL; DUESTERHOEFT, JON
To: SIOUX STEEL COMPANY
Reel/Frame 045622/0259 →
Continuity (1)
Provisional Application 62489564 · Apr 25, 2017
Cited By (4)
US 12,275,604 US 12,304,757 US 12,319,514 US 12,473,158