IP Library Granted Patent US 12,030,725
Granted Patent B2
US 12,030,725 · App. 17/740,517 · Granted Jul 9, 2024

In-line rail valve

Inventors: David Francis Hesketh (Matthews, NC); Jeffrey Allen Dudas (Waxhaw, NC)
Assignee: Spiroflow Systems, Inc.
B65G19/14B65G19/22B65G19/28F16K3/267
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Quick Facts
Patent No.
US 12,030,725
App. No.
17/740,517
Granted
Jul 9, 2024
Kind
B2
Abstract

An in-line valve assembly for a tubular drag conveyer system includes a first tube segment having a first end and defining a first passageway, a second tube segment having a second end and defining a second passageway, and a tubular valve body translatably disposed relative to the second tube segment and defining a valve passageway. The first end of the first tube segment is spaced apart from the second end of the second tube segment by a gap. The valve body is selectively adjustable between a closed position wherein the valve passageway spans the gap and connects the first passageway to the second passageway and an open position wherein the valve passageway is spaced apart from the first passageway by at least a portion of the gap.

Claims (31)

1. An in-line valve assembly for a tubular drag conveyer system, the valve assembly comprising:

a first tube segment having a first end and defining a first passageway, wherein an end portion of the first tube segment is outwardly tapered towards the first end thereof;

a second tube segment having a second end and defining a second passageway, the first end of the first tube segment spaced apart from the second end of the second tube segment by a gap; and

a tubular valve body translatably disposed relative to the second tube segment and defining a valve passageway, the valve body selectively adjustable between a closed position wherein the valve passageway spans the gap and connects the first passageway to the second passageway and an open position wherein the valve passageway is spaced apart from the first passageway by at least a portion of the gap.

2. The valve assembly of claim 1 , further comprising a linear drive actuator configured to selectively translate the valve body towards or away from the second tube segment.

3. The valve assembly of claim 2 , wherein the linear drive actuator is a pneumatic actuator.

4. The valve assembly of claim 3 , wherein a piston of the pneumatic actuator is coupled to the valve body.

5. The valve assembly of claim 2 , wherein the linear drive actuator extends longitudinally in parallel to the first tube segment.

6. The valve assembly of claim 1 , wherein the valve body includes a tube engaging segment slidably disposed along an outer circumferential surface of the second tube segment.

7. The valve assembly of claim 6 , wherein the tube engaging segment includes at least one sealing element contacting the outer circumferential surface of the second tube segment.

8. The valve assembly of claim 1 , wherein an inner diameter of the first passageway at the first end of the first tube segment corresponds to an inner diameter of the valve passageway.

9. The valve assembly of claim 1 , wherein a gasket disposed at an end of the valve body sealingly contacts the first end of the first tube segment when the valve body is in the closed position.

10. The valve assembly of claim 1 , wherein the valve body is telescopically received over the second tube segment when the valve body is adjusted from the closed position to the open position.

11. The valve assembly of claim 1 , wherein the valve body is transparent.

12. The valve assembly of claim 1 , wherein a product conveyed through the second tube segment falls by the force of gravity when the product reaches the second end of the second tube segment and the valve body is in the open position.

13. The valve assembly of claim 1 , wherein a conveying mechanism extends across each of the first passageway, the second passageway, and the valve passageway regardless of the position of the valve body.

14. The valve assembly of claim 1 , wherein the valve assembly is mounted to an enclosure.

15. The valve assembly of claim 14 , wherein the enclosure includes an opening in a bottom side thereof.

16. The valve assembly of claim 1 , wherein a plurality of guide rails guide the translation of the valve body relative to the second tube segment.

17. The valve assembly of claim 16 , wherein the guide rails are circumferentially spaced around an outer circumferential surface of the valve body.

18. The valve assembly of claim 1 , wherein the first passageway, the second passageway, and the valve passageway are axially aligned.

19. A tubular drag conveyer system comprising:

an in-line valve assembly comprising:

a first tube segment having a first end and defining a first passageway, wherein an end portion of the first tube segment is outwardly tapered towards the first end thereof;

a second tube segment having a second end and defining a second passageway, the first end of the first tube segment spaced apart from the second end of the second tube segment by a gap; and

a tubular valve body translatably disposed relative to the second tube segment and defining a valve passageway, the valve body selectively adjustable between a closed position wherein the valve passageway spans the gap and connects the first passageway to the second passageway and an open position wherein the valve passageway is spaced apart from the first passageway by at least a portion of the gap; and

a conveying mechanism extending through each of the first tube segment, the second tube segment, and the valve body, the conveying mechanism including an elongate element and a plurality of push elements spaced apart with respect to a longitudinal direction of the elongate element.

20. An in-line valve assembly for a tubular drag conveyer system, the valve assembly comprising:

a first tube segment having a first end and defining a first passageway;

a second tube segment having a second end and defining a second passageway, the first end of the first tube segment spaced apart from the second end of the second tube segment by a gap; and

a tubular valve body translatably disposed relative to the second tube segment and defining a valve passageway, the valve body selectively adjustable between a closed position wherein the valve passageway spans the gap and connects the first passageway to the second passageway and an open position wherein the valve passageway is spaced apart from the first passageway by at least a portion of the gap, and wherein the valve body includes a tube engaging segment slidably disposed along an outer circumferential surface of the second tube segment.

Assignments (2)
SECURITY INTEREST Recorded Dec 19, 2024
From: MARION PROCESS SOLUTIONS, INC.; KASON CORPORATION; INTRACO, INC.; SPIROFLOW SYSTEMS, INC.
To: KAYNE ANDERSON PRIVATE CREDIT, LLC, AS ADMINISTRATIVE AGENT
Reel/Frame 069632/0154 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 10, 2022
From: HESKETH, DAVID FRANCIS; DUDAS, JEFFREY ALLEN
To: SPIROFLOW SYSTEMS, INC.
Reel/Frame 059878/0924 →
Continuity (1)
Related Publication 20230365337A1 · Nov 16, 2023