IP Library Granted Patent US 9,555,980
Granted Patent B2
US 9,555,980 · App. 14/157,842 · Granted Jan 31, 2017

Inlet for particulate loader

Inventors: Kent Gregory Woods (Swift Current, CA); Joseph Robert Parisien (Swift Current, CA); Paul Kerr (Hodgeville, CA)
Assignee: AG GROWTH INDUSTRIES PARTNERSHIP
B65G53/64
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Quick Facts
Patent No.
US 9,555,980
App. No.
14/157,842
Granted
Jan 31, 2017
Kind
B2
Abstract

A particulate loader for transferring particulates. The particulate loader comprises an air-particulates separating chamber for separating the particulates from an air stream caused by suction provided thereto. A suction mechanism is connected to the air-particulates separating chamber for providing the suction thereto. The particulate loader comprises a conveying mechanism for conveying the separated particulates from the air-particulates separating chamber to a remote location. A vacuum pickup hose is in fluid communication with the air-particulates separating chamber for transmitting the airstream with the particulates therethrough. An inlet conduit is in fluid communication with the vacuum pickup hose at a first end and with the air-particulates separating chamber at a second end for transmitting the airstream with the particulates from the vacuum pickup hose to the air-particulates separating chamber. The inlet conduit is elongated between the first end and the second end and a cross-section of the inlet conduit increases from a first cross-section at the first end to a second cross-section at the second end.

Claims (26)

1. A particulate loader for transferring particulates comprising:

an air-particulates separating chamber for separating the particulates from an air stream caused by suction provided thereto;

a suction mechanism connected to the air-particulates separating chamber for providing the suction thereto;

a conveying mechanism for conveying the separated particulates from the air-particulates separating chamber to a remote location;

a vacuum pickup hose or pipe configured to be in fluid communication with the air-particulates separating chamber for transmitting the air stream with the particulates therethrough; and,

an inlet conduit connectable to the vacuum pickup hose or pipe at a first end and in fluid communication with the air-particulates separating chamber at a second end for transmitting the air stream with the particulates from the vacuum pickup hose or pipe to the air-particulates separating chamber, wherein the inlet conduit is elongated between the first end and the second end and wherein a diameter of a cross-section of the inlet conduit increases by at least one inch from a first cross-section at the first end to a second cross-section at the second end, the inlet port having an approximately constant cross section, wherein the air-particulates separating chamber comprises an inlet port in fluid communication with the inlet conduit, and wherein inlet port protrudes into the air-particulates separating chamber a predetermined distance.

2. The particulate loader according to claim 1 wherein the cross-section of the inlet conduit increases in a stepwise fashion.

3. The particulate loader according to claim 2 wherein the cross-section of the inlet conduit increases in at least two steps.

4. The particulate loader according to claim 3 wherein the inlet conduit has the second cross-section along a substantial portion of its length.

5. The particulate loader according to claim 4 wherein the inlet conduit has an intermediate cross-section along another substantial portion of its length.

6. The particulate loader according to claim 5 wherein the inlet conduit comprises a first inlet element having the intermediate cross-section and a second inlet element having the second cross-section, the first inlet element being telescopically movable with respect to the second inlet element.

7. The particulate loader according to claim 1 wherein the inlet conduit is designed such that a velocity of the air stream with the particulates through the vacuum pickup hose or pipe is increased while the suction provided by the suction mechanism is substantially the same.

8. The particulate loader according to claim 1 wherein the inlet conduit comprises a first inlet element and a second inlet element, the first inlet element being telescopically movable with respect to the second inlet element.

9. The particulate loader according to claim 1 wherein inlet port ends in a plane oriented substantially parallel to an inside wall surface of the air-particulates separating chamber.

10. The particulate loader of claim 3 wherein each of the at least two steps comprises a change in the diameter of the cross-section of the inlet conduit of at least one inch.

11. The particulate loader of claim 1 wherein the diameter of the cross-section of the inlet conduit increases by exactly one inch from the first cross-section at the first end to the second cross-section at the second end.

12. The particulate loader of claim 1 wherein the diameter of the cross-section of the inlet conduit increases by one inch or two inches from the first cross-section at the first end to the second cross-section at the second end.

13. The particulate loader of claim 1 wherein the inlet conduit has a fixed length.

14. The particulate loader of claim 8 further comprising a sealing ring positioned between the first inlet element and the second inlet element for sealing the first inlet element and the second inlet element relative to each other.

15. The particulate loader of claim 1 wherein the inlet conduit is aligned with and parallel to an inlet port of the air-particulates separating chamber.

16. A particulate loader for transferring particulates comprising:

an air-particulates separating chamber for separating the particulates from an air stream caused by suction provided thereto;

a suction mechanism connected to the air-particulates separating chamber for providing the suction thereto;

a conveying mechanism for conveying the separated particulates from the air-particulates separating chamber to a remote location;

a vacuum pickup hose or pipe configured to be in fluid communication with the air-particulates separating chamber for transmitting the air stream with the particulates therethrough, and

an inlet conduit connectable to the vacuum pickup hose or pipe at a first end and in fluid communication with the air-particulates separating chamber at a second end for transmitting the air stream with the particulates from the vacuum pickup hose or pipe to the air-particulates separating chamber, wherein the inlet conduit is elongated between the first end and the second end and wherein a cross-sectional area of the inlet conduit increases by at least 23% from a first cross-section at the first end to a second cross-section at the second end, wherein the air-particulates separating chamber comprises an inlet port in fluid communication with the inlet conduit, the inlet port having an approximately constant cross section, and wherein inlet port protrudes into the air-particulates separating chamber a predetermined distance.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 21, 2025
From: AG GROWTH INDUSTRIES PARTNERSHIP
To: AGX HOLDINGS INC.; AG GROWTH INTERNATIONAL INC.
Reel/Frame 071182/0164 →
MERGER Recorded May 21, 2025
From: AGX HOLDINGS INC.; AG GROWTH INTERNATIONAL INC.
To: AG GROWTH INTERNATIONAL INC.
Reel/Frame 071348/0043 →
SECURITY INTEREST Recorded Nov 20, 2018
From: AG GROWTH INTERNATIONAL INC.
To: CANADIAN IMPERIAL BANK OF COMMERCE
Reel/Frame 047551/0332 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 4, 2014
From: WOODS, KENT GREGORY; PARISIEN, JOSEPH ROBERT; KERR, PAUL
To: REM ENTERPRISES INC.
Reel/Frame 032600/0046 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 18, 2014
From: REM ENTERPRISES INC.
To: AG GROWTH INDUSTRIES PARTNERSHIP
Reel/Frame 032342/0650 →
Priority Claims (1)
CA 2834116 · Nov 22, 2013 · national
Continuity (1)
Related Publication 20150147125A1 · May 28, 2015