IP Library Granted Patent US 9,909,446
Granted Patent B2
US 9,909,446 · App. 15/356,815 · Granted Mar 6, 2018

Self-locking plug

Inventor: Kurt Kevin Bynum (Brighton, MI)
F01D21/003F16B2/10G02B23/2476F05D2220/323F05D2270/804F16L19/005Y02T50/671
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Quick Facts
Patent No.
US 9,909,446
App. No.
15/356,815
Granted
Mar 6, 2018
Kind
B2
Abstract

A compact, highly-reusable, self-locking includes a body component, a flexible beam finger component with a plurality of axially-oriented flexible beam fingers and one or more outwardly extending tabs, an annular detent ring component including a plurality of detents in radial alignment with the plurality of flexible beam fingers, and a biasing component engaging the flange of the flexible beam finger component and the annular detent ring component for providing a biasing force to urge the flexible finger beam component in a direction of a central, longitudinal axis of the self-locking plug. The flexible beam finger component moves relative to the annular detent ring component when the body component is rotated about the central, longitudinal axis, A, of the self-locking plug, thereby causing the plurality of flexible beam fingers to travel across the plurality of detents and cause elastic deformation of the flexible beam fingers.

Claims (38)

1. A self-locking plug, comprising:

a body component including a flange;

a flexible beam finger component disposed about the body component and including a plurality of axially-oriented flexible beam fingers, and a flange radially inward from the flexible beam fingers;

an annular detent ring component including a plurality of circumferentially-arranged detents separated by ridges in radial alignment with the plurality of flexible beam fingers; and

a biasing component contacting the flange of the flexible beam finger component and the annular detent ring component for providing a biasing force to urge the flexible beam finger component in a direction of a central, longitudinal axis, A, of the self-locking plug,

wherein the plurality of flexible beam fingers travel across the plurality of detents to cause elastic deformation of the flexible beam fingers when the body component is rotated about the central, longitudinal axis, A, of the self-locking plug, and

wherein the flange of the body component contacts the flange of the flexible beam finger component when the self-locking plug is assembled.

2. The self-locking plug according to claim 1 , wherein the number of detents is equal to the number of flexible beam fingers.

3. The self-locking plug according to claim 1 , wherein the flexible beam finger component further comprises one or more outwardly extending tabs that extend in an axial direction with respect to the central, longitudinal axis, A, of the self-locking plug.

4. The self-locking plug according to claim 1 , wherein the flexible beam finger component further comprises one or more outwardly extending tabs that extend in a radial direction with respect to the central, longitudinal axis, A, of the self-locking plug.

5. The self-locking plug according to claim 1 , wherein each detent has a generally concave surface and is separated by a substantially planar surface for facilitating interaction with the flexible beam fingers as the plurality of flexible beam fingers travel across the plurality of detents.

6. The self-locking plug according to claim 1 , wherein the detents are always in contact with the flexible beam fingers when the flexible beam finger component is rotated relative to the annular detent ring component.

7. The self-locking plug according to claim 1 , wherein the flexible beam finger component further comprises one or more outwardly extending tabs, and wherein the one or more outwardly extending tabs of the flexible beam finger component contact a slot formed in a borescope port to prevent rotation of the self-locking plug when the body component rotates about the central, longitudinal axis of the self-locking plug, thereby providing an anti-rotation feature between the flexible beam finger component and the borescope port.

8. The self-locking plug according to claim 1 , wherein the flexible beam finger component further comprises one or more outwardly extending tabs, and wherein the one or more outwardly extending tabs of the flexible beam finger component includes a slot that contacts a tab formed in a borescope port to prevent rotation of the self-locking plug when the body component rotates about the central, longitudinal axis of the self-locking plug, thereby providing an anti-rotation feature between the flexible beam finger component and the borescope port.

9. A self-locking plug, comprising:

a body component including a flange;

a flexible beam finger component disposed about the body component and including a plurality of axially-oriented flexible beam fingers, and a flange radially inward from the flexible beam fingers;

an annular detent ring component including a plurality of circumferentially-arranged detents separated by ridges in radial alignment with the plurality of flexible beam fingers; and

a biasing component contacting the flange of the flexible beam finger component and the annular detent ring component for providing a biasing force to urge the flexible beam finger component in a direction of a central, longitudinal axis, A, of the self-locking plug,

wherein the plurality of flexible beam fingers travel across the plurality of detents to cause elastic deformation of the flexible beam fingers when the body component is rotated about the central, longitudinal axis, A, of the self-locking plug, and

wherein the flexible beam finger component contacts a borescope port in such a way so as to prevent rotation of the self-locking plug when the body component rotates about the central, longitudinal axis of the self-locking plug, thereby providing an anti-rotation feature between the flexible beam finger component and the borescope port.

10. The self-locking plug according to claim 9 , wherein the number of detents is equal to the number of flexible beam fingers.

11. The self-locking plug according to claim 9 , wherein the flexible beam finger component further comprises one or more outwardly extending tabs that extend in an axial direction with respect to the central, longitudinal axis, A, of the self-locking plug.

12. The self-locking plug according to claim 9 , wherein the flexible beam finger component further comprises one or more outwardly extending tabs that extend in a radial direction with respect to the central, longitudinal axis, A, of the self-locking plug.

13. The self-locking plug according to claim 9 , wherein each detent has a generally concave surface and is separated by a substantially planar surface for facilitating interaction with the flexible beam fingers as the plurality of flexible beam fingers travel across the plurality of detents.

14. The self-locking plug according to claim 9 , wherein the detents are always in contact with the flexible beam fingers when the flexible beam finger component is rotated relative to the annular detent ring component.

15. A self-locking plug, comprising:

a body component including a flange;

a flexible beam finger component disposed about the body component and including a plurality of axially-oriented flexible beam fingers, and a flange radially inward from the flexible beam fingers;

an annular detent ring component including a plurality of circumferentially-arranged detents separated by ridges in radial alignment with the plurality of flexible beam fingers; and

a biasing component contacting the flange of the flexible beam finger component and the annular detent ring component for providing a biasing force to urge the flexible beam finger component in a direction of a central, longitudinal axis, A, of the self-locking plug,

wherein the plurality of flexible beam fingers travel across the plurality of detents to cause elastic deformation of the flexible beam fingers when the body component is rotated about the central, longitudinal axis, A, of the self-locking plug, and

wherein the flexible beam finger component contacts a borescope port in such a way as to prevent rotation of the self-locking plug when the body component rotates about the central, longitudinal axis of the self-locking plug, thereby providing an anti-rotation feature between the flexible beam finger component and the borescope port.

16. The self-locking plug according to claim 15 , wherein the number of detents is equal to the number of flexible beam fingers.

17. The self-locking plug according to claim 15 , wherein the flexible beam finger component further comprises one or more outwardly extending tabs that extend in an axial direction with respect to the central, longitudinal axis, A, of the self-locking plug.

18. The self-locking plug according to claim 15 , wherein the flexible beam finger component further comprises one or more outwardly extending tabs that extend in a radial direction with respect to the central, longitudinal axis, A, of the self-locking plug.

19. The self-locking plug according to claim 15 , wherein each detent has a generally concave surface and is separated by a substantially planar surface for facilitating interaction with the flexible beam fingers as the plurality of flexible beam fingers travel across the plurality of detents.

20. The self-locking plug according to claim 15 , wherein the detents are always in contact with the flexible beam fingers when the flexible beam finger component is rotated relative to the annular detent ring component.

Assignments (2)
SECURITY INTEREST Recorded Oct 25, 2021
From: MOELLER MFG. COMPANY, LLC
To: BAIN CAPITAL CREDIT, LP
Reel/Frame 057902/0435 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 21, 2016
From: BYNUM, KURT KEVIN
To: MOELLER MFG. COMPANY, LLC
Reel/Frame 040387/0442 →
Continuity (2)
Continuation In Part 14505600 · Oct 3, 2014
Related Publication 20170067361A1 · Mar 9, 2017