IP Library › Granted Patent US 11,618,573
Granted Patent B2
US 11,618,573 · App. 17/162,324 · Granted Apr 4, 2023

Automatic lifting mechanism for aircraft armrest

Inventor: Douglas E. Hoover (Colorado Springs, CO)
Assignee: AMI Industries, Inc.
B64D11/0644B64D11/06395
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Quick Facts
Patent No.
US 11,618,573
App. No.
17/162,324
Granted
Apr 4, 2023
Kind
B2
Abstract

An aircraft armrest lifting mechanism generally biases the aircraft armrest toward a raised configuration. A linear actuator applies tension to a cable connected to a portion of an armrest hub connected to an armrest shaft. The portion of the armrest hub extends some distance from the armrest shaft so that the linear actuator applies a moment between an attachment point on the armrest and the armrest shaft that tends to rotate the armrest toward a raised configuration.

Claims (45)

1. An armrest lifting apparatus comprising:

a linear actuator;

a tension cable; and

an armrest hub comprising an actuator connection portion some distance from a center of rotation of the armrest hub,

wherein:

the linear actuator is affixed to a surface of an armrest;

the armrest hub is affixed to an armrest shaft;

the actuator connection portion extends a distance from the armrest shaft;

the tension cable connects the linear actuator to the actuator connection portion of the armrest hub; and

the linear actuator and armrest hub are disposed to apply a force moment of rotation to the armrest hub and armrest that biases the armrest to rotate toward a raised orientation.

2. The armrest lifting apparatus of claim 1 , wherein the linear actuator comprises a spring.

3. The armrest lifting apparatus of claim 1 , further comprising a deflection element disposed on the surface of the armrest, the deflection element configured to deflect the cable from the linear actuator to the actuator connection portion.

4. The armrest lifting apparatus of claim 3 , wherein the deflection element comprises a pulley.

5. The armrest lifting apparatus of claim 1 , further comprising an armrest limit stop pin connecting the armrest hub to the armrest shaft.

6. The armrest lifting apparatus of claim 5 , wherein:

the armrest hub defines an armrest limit stop pin channel;

the armrest limit stop pin channel defines a range of movement of the armrest hub with respect to the armrest shaft; and

the armrest hub is rotatably affixed to the armrest shaft within the range of movement.

7. The armrest lifting apparatus of claim 1 , wherein the armrest hub further comprises a rotation limiting arm, the rotation limiting arm defining a pin recess configured to abut a pin in the armrest when the armrest is rotated a defined amount with respect to the armrest hub.

8. The armrest lifting apparatus of claim 7 , further comprising a deflection element disposed on the surface of the armrest, wherein:

the rotation limiting arm further defines a deflection element recess; and

the deflection element recess is configured to abut the deflection element and define a maximum amount or armrest rotation.

9. An aircraft armrest comprising:

an armrest shaft connecting the aircraft armrest to a seat structure; and

an armrest lifting apparatus comprising:

a linear actuator;

a tension cable; and

an armrest hub comprising an actuator connection portion some distance from a center of rotation of the armrest hub,

wherein:

the linear actuator is affixed to a surface of aircraft armrest;

the armrest hub is affixed to the armrest shaft;

the actuator connection portion extends a distance from the armrest shaft;

the tension cable connects the linear actuator to the actuator connection portion of the armrest hub; and

the linear actuator and armrest hub are disposed to apply a moment of rotation to the armrest hub and armrest that biases the aircraft armrest to rotate toward a raised orientation.

10. The aircraft armrest of claim 9 , further comprising a deflection element disposed on the surface of the armrest, the deflection element configured to deflect the cable from the linear actuator to the actuator connection portion.

11. The aircraft armrest of claim 10 , wherein the deflection element comprises a pulley.

12. The aircraft armrest of claim 9 , further comprising an armrest limit stop pin connecting the armrest hub to the armrest shaft.

13. The aircraft armrest of claim 12 , wherein:

the armrest hub defines an armrest limit stop pin channel;

the armrest limit stop pin channel defines a range of movement of the armrest hub with respect to the armrest shaft; and

the armrest hub is rotatably affixed to the armrest shaft within the range of movement.

14. The aircraft armrest of claim 9 , wherein the armrest hub further comprises a rotation limiting arm, the rotation limiting arm defining a pin recess configured to abut a pin in the armrest when the armrest is rotated a defined amount with respect to the armrest hub.

15. The aircraft armrest of claim 14 , further comprising a deflection element disposed on the surface of the armrest, wherein:

the rotation limiting arm further defines a deflection element recess; and

the deflection element recess is configured to abut the deflection element and define a maximum amount or armrest rotation.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 29, 2021
From: HOOEVER, DOUGLAS E.
To: AMI INDUSTRIES, INC.
Reel/Frame 055079/0342 →
Continuity (2)
Provisional Application 62982497 · Feb 27, 2020
Related Publication 20210269159A1 · Sep 2, 2021
Cited By (2)
US 12,403,804 US 12,623,580