IP Library Granted Patent US 11,433,994
Granted Patent B2
US 11,433,994 · App. 16/514,776 · Granted Sep 6, 2022

Mechanical link with preload verification

Inventor: Edward Joseph Nowakowski (Berkeley, MO)
Assignee: The Boeing Company
B64C25/60B64C25/04B64C25/20
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Quick Facts
Patent No.
US 11,433,994
App. No.
16/514,776
Granted
Sep 6, 2022
Kind
B2
Abstract

A mechanical link ( 100 ) comprises a shaft ( 102 ). A first mounting interface ( 108 ) extends from the first end portion ( 104 ) of the shaft ( 102 ) and is not movable relative to the shaft ( 102 ). A second mounting interface ( 110 ) is threadably coupled with the second end portion ( 106 ) of the shaft ( 102 ). A tubular sleeve ( 114 ) circumscribes a portion of the shaft ( 102 ) and comprises a slot ( 116 ). A pin ( 112 ) extends from the shaft ( 102 ) and passes through the slot ( 116 ). A stop ( 124 ) is coupled with the second end portion ( 106 ) and fixed to the shaft ( 102 ). A washer ( 126 ) circumscribes a portion of the shaft ( 102 ) between the tubular sleeve ( 114 ) and the stop ( 124 ). A spring ( 122 ) biases the tubular sleeve ( 114 ) toward the stop ( 124 ). A first jam nut ( 132 ) is threadably coupled with the second end portion ( 106 ) between the second mounting interface ( 110 ) and the stop ( 124 ).

Claims (51)

1. A mechanical link, comprising:

a shaft, having a central axis and comprising a first end portion and a second end portion that opposes the first end portion along the central;

a first mounting interface that extends from the first end portion of the shaft and that is not movable relative to the shaft;

a second mounting interface, threadably coupled with the second end portion of the shaft;

a tubular sleeve, circumscribing a portion of the shaft between the first end portion and the second end portion and comprising a slot;

a pin, extending from the shaft in a direction, perpendicular to the central axis, such that the pin passes through the slot of the tubular sleeve;

a stop, threadably coupled with the second end portion of the shaft and fixed to the shaft at a predetermined location along the second end portion of the shaft, such that the stop is not rotatable relative to the shaft;

a washer, circumscribing a portion of the shaft between the tubular sleeve and the stop;

a spring, positioned between the first mounting interface and the tubular sleeve and biasing the tubular sleeve toward the stop; and

a first jam nut threadably coupled with the second end portion of the shaft and located between the second mounting interface and the stop.

2. The mechanical link according to claim 1 , wherein:

the first mounting interface comprises one of a receiver, opposing jaws, an eyelet, or a hook; and

the second mounting interface comprises one of a receiver, opposing jaws, an eyelet, or a hook.

3. The mechanical link according to claim 1 , wherein the tubular sleeve has a clearance fit with the shaft along the central axis.

4. The mechanical link according to claim 1 , wherein the slot of the tubular sleeve is parallel to the central axis of the shaft.

5. The mechanical link according to claim 1 , further comprising a stop pin, fixedly coupling the stop to the shaft at the predetermined location along the second end portion of the shaft, such that the stop is neither translatable nor rotatable relative to the shaft.

6. The mechanical link according to claim 1 , further comprising:

a second jam nut, threadably coupled with the second end portion of the shaft and located between the stop and the first jam nut; and

wherein the second jam nut secures the stop to the shaft at the predetermined location along the second end portion of the shaft, such that the stop is not rotatable relative to the shaft.

7. The mechanical link according to claim 1 , wherein the tubular sleeve has a radial axis, perpendicular to the central axis of the shaft, and further comprises a second slot, opposing the slot along the radial axis.

8. The mechanical link according to claim 7 , wherein:

the pin has a pin axis, perpendicular to the central axis of the shaft; and

the pin comprises:

a first end that extends from the shaft along the pin axis, such that the first end of the pin passes through the slot of the tubular sleeve; and

a second end, opposing the first end of the pin along the pin axis and extending from the shaft along the pin axis, such that the second end of the pin passes through the second slot of the tubular sleeve.

9. The mechanical link according to claim 7 , further comprising:

a second pin that extends from the shaft in a second direction, such that the second pin passes through the second slot of the tubular sleeve; and

wherein the pin extends from the shaft such that the pin passes through the slot of the tubular sleeve.

10. The mechanical link according to claim 1 , wherein:

the spring biases the tubular sleeve toward the stop with a biasing force (F);

a first friction force between the tubular sleeve and the washer is equal to a product of a first coefficient of friction between the tubular sleeve and the washer and the biasing force (F); and

a second friction force between the stop and the washer is equal to a product of a second coefficient of friction between the stop and the washer and the biasing force (F).

11. The mechanical link according to claim 10 , wherein the first friction force is different from the second friction force.

12. The mechanical link according to claim 10 , wherein the first friction force is identical to the second friction force.

13. The mechanical link according to claim 1 , wherein the shaft further comprises a cavity, perpendicular to the central axis.

14. The mechanical link according to claim 13 , wherein the cavity is located in the second end portion of the shaft.

15. The mechanical link according to claim 13 , wherein the cavity is a blind cavity.

16. The mechanical link according to claim 13 , wherein the cavity is a through cavity.

17. The mechanical link according to claim 13 , further comprising a shaft-adjustment pin, configured to be received within the cavity.

18. The mechanical link according to claim 17 , wherein the shaft-adjustment pin is configured to be received within the cavity with a clearance fit.

19. The mechanical link according to claim 17 , wherein the shaft-adjustment pin is fixed within the cavity.

20. An aircraft landing gear, comprising a mechanical link that comprises:

a shaft, having a central axis and comprising a first end portion and a second end portion that opposes the first end portion along the central axis;

a first mounting interface that extends from the first end portion of the shaft and that is not movable relative to the shaft;

a second mounting interface, threadably coupled with the second end portion of the shaft;

a tubular sleeve, circumscribing a portion of the shaft between the first end portion and the second end portion and comprising a slot;

a pin, extending from the shaft in a direction, perpendicular to the central axis, such that the pin passes through the slot of the tubular sleeve;

a stop, threadably coupled with the second end portion of the shaft and fixed to the shaft at a predetermined location along the second end portion of the shaft, such that the stop is not rotatable relative to the shaft;

a washer, circumscribing a portion of the shaft between the tubular sleeve and the stop;

a spring, positioned between the first mounting interface and the tubular sleeve and biasing the tubular sleeve toward the stop; and

a first jam nut, threadably coupled with the second end portion of the shaft and located between the second mounting interface and the stop.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2019
From: NOWAKOWSKI, EDWARD JOSEPH
To: THE BOEING COMPANY
Reel/Frame 049782/0484 →
Continuity (1)
Related Publication 20210016874A1 · Jan 21, 2021
Cited By (1)
US 12,221,206