IP Library › Granted Patent US 10,208,863
Granted Patent B2
US 10,208,863 · App. 15/494,149 · Granted Feb 19, 2019

Pressure assisted connection for a valve shaft

Inventors: Cam B. Robinson (Sherwood Park, CA); Curtis Dale (Beaumont, CA)
Assignee: Dyna-Flo Control Valve Services Ltd.
F16K5/0626
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Quick Facts
Patent No.
US 10,208,863
App. No.
15/494,149
Granted
Feb 19, 2019
Kind
B2
Abstract

A valve having a valve closure member in a valve housing is provided. The valve closure member has a shaft received within an aperture of the closure member and extending out of the housing. One or more locking apertures are formed between an inner surface of the aperture of the valve closure member and an outer surface of the shaft, the locking apertures being angled outward from an axis of the shaft and toward the interior end of the shaft. One or more locking members are inserted into and engage each of the locking apertures, the locking members securing the position of the shaft relative to the valve closure member such that rotation of the shaft rotates the valve closure member between an open position and a closed position and such that internal pressure from within the valve housing increases the engagement between the locking members and the locking apertures.

Claims (21)

1. A valve, comprising:

a valve closure member in a valve housing;

a shaft having a first end and a second end, the first end being received within a shaft-receiving aperture of the valve closure member, and the second end extending out of the valve housing;

one or more locking apertures defined by a first portion formed in an inner surface of the shaft-receiving aperture of the valve closure member and a second portion formed in an outer surface of the shaft, the locking apertures extending along and being angled outward from a rotational axis of the shaft and toward the first end of the shaft; and

one or more locking members, each locking member being inserted into one of the locking apertures and engaging the first portion and the second portion of the respective locking aperture, the locking member securing the position of the shaft relative to the valve closure member such that rotation of the shaft about the rotational axis rotates the valve closure member between an open position and a closed position and such that internal pressure from within the valve housing increases the engagement between the locking members and the locking apertures.

2. The valve of claim 1 , comprising two or more locking apertures and two or more locking members.

3. The valve of claim 2 , wherein the two or more locking apertures are spaced evenly about a circumference of the shaft.

4. The valve of claim 1 , further comprising a retainer that threadably engages the shaft-receiving aperture and retains the first end of the shaft.

5. The valve of claim 1 , wherein the first end of the shaft has an outer diameter that is less than an inner diameter of the shaft-receiving apertures such that the first end of the shaft is insertable through the shaft-receiving apertures prior to the locking members being inserted into the locking apertures.

6. The valve of claim 1 , wherein the one or more locking apertures are exclusively accessible via an inner cavity of the valve housing when the shaft is received within the shaft receiving aperture.

7. The valve of claim 1 , wherein the valve closure member is a ball valve.

8. A method of assembling a valve, comprising:

inserting a valve closure member into a valve housing;

inserting a first end of a shaft through the valve housing and the valve closure member such that the first end is received within a shaft-receiving aperture of the valve closure member and such that a second end of the shaft extends out of the valve housing; and

installing one or more locking members in one or more locking apertures, each locking aperture being defined by a first portion formed in an inner surface of the shaft-receiving aperture of the valve closure member and a second portion formed in an outer surface of the shaft, each locking aperture extending along and being angled outward from a rotational axis of the shaft and toward the first end of the shaft, wherein each locking member engages the first portion and the second portion of the respective locking aperture to secure the position of the shaft relative to the valve closure member such that rotation of the shaft about the rotational axis rotates the valve closure member between an open position and a closed position and such that internal pressure from within the valve housing increases the engagement between the one or more locking members and the one or more locking apertures.

9. The method of claim 8 , wherein the one or more locking apertures comprise two or more locking apertures and the one or more locking members comprises two or more locking members.

10. The method of claim 9 , wherein the two or more locking apertures are spaced evenly about a circumference of the shaft.

11. The valve of claim 8 , wherein installing locking members further comprises the step of installing a retainer, the retainer threadably engaging the shaft-receiving aperture and retaining the first end of the shaft.

12. The method of claim 8 , wherein the first end of the shaft has an outer diameter that is less than an inner diameter of the shaft-receiving apertures.

13. The method of claim 8 , wherein the one or more locking apertures are exclusively accessible via an inner cavity of the valve housing when the shaft is received within the shaft receiving aperture.

14. The method of claim 8 , wherein the valve closure member is a ball valve.

Assignments (2)
AMALGAMATION Recorded Aug 25, 2022
From: DYNA-FLO CONTROL VALVE SERVICES LTD.
To: CURTISS-WRIGHT FLOW CONTROL COMPANY CANADA
Reel/Frame 061318/0657 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 30, 2017
From: ROBINSON, CAM B.; DALE, CURTIS
To: DYNA-FLO CONTROL VALVE SERVICES LTD.
Reel/Frame 042533/0038 →
Continuity (1)
Related Publication 20180306333A1 · Oct 25, 2018
Cited By (1)
US 12,590,639