IP Library › Granted Patent US 11,644,057
Granted Patent B2
US 11,644,057 · App. 16/852,852 · Granted May 9, 2023

Reusable release mechanism

Inventor: Scott G. Sabo (Long Beach, CA)
Assignee: NORTHROP GRUMMAN SYSTEMS CORPORATION
F16B21/165B64G1/222F16B21/02Y10T403/592
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Quick Facts
Patent No.
US 11,644,057
App. No.
16/852,852
Granted
May 9, 2023
Kind
B2
Abstract

A release mechanism for releasably securing a releasable structure to a stationary structure, where the mechanism employs release balls that can re-secure the releasable structure to the stationary structure. The release mechanism includes a base portion having three rails extending radially outward from a center of the base portion, and a rotatable portion rotatably mounted to the base portion, where the rotatable portion has a cam indentation. The release balls are positioned between the base portion and the rotatable portion so that one of the release balls is ridable on each of the rails and all of the release balls are positioned within the cam indentation. The cam indentation is configured so that as the rotatable portion is rotated relative to the base portion the cam indentation causes and allows the release balls to move along the rails in unison with each other to hold and release the releasable structure.

Claims (30)

1. A release mechanism comprising:

a base portion including a plurality of equally spaced rails extending radially outward from a center of the base portion;

a rotatable portion rotatably mounted to the base portion, said rotatable portion including a bottom surface having a cam indentation; and

a plurality of release balls positioned between the base portion and the rotatable portion so that one of the release balls is ridable on each of the rails and all of the release balls are positioned within the cam indentation, said cam indentation being configured so that as the rotatable portion is rotated relative to the base portion the cam indentation causes the release balls to move along the rails to the center and allows the release balls to move outward away from the center in unison with each other.

2. The release mechanism according to claim 1 wherein the plurality of rails is three rails extending radially outward at 120° relative to each other and the number of release balls is three release balls.

3. The release mechanism according to claim 2 wherein the cam indentation includes three equally spaced pockets that the release balls are positioned in when the balls are at an end of the rails opposite to the center of the base portion, and radii surfaces between the pockets that the release balls are positioned against when the balls are at an end of the rails proximate to the center of the base portion.

4. The release mechanism according to claim 1 wherein the base portion and the rotatable portion include a central bore that accepts a bolt, said release balls being configured to hold the bolt when the balls are at an end of the rails proximate to the center of the base portion and release the bolt when the balls are at an end of the rails opposite to the center of the base portion.

5. The release mechanism according to claim 1 wherein the base portion includes a stop block and the rotatable portion includes a tab, said tab engaging the stop block when the rotatable portion is rotated to either hold the release balls at an end of the rails proximate to the center of the base portion or hold the release balls at an end of the rails opposite to the center of the base portion.

6. The release mechanism according to claim 5 wherein the stop block is secured to the base portion by a pull pin.

7. The release mechanism according to claim 1 wherein the rotatable portion includes a nut that accepts a wrench for rotating the rotatable portion.

8. The release mechanism according to claim 1 wherein the base portion is square and the rotatable portion is round.

9. A release mechanism for releasably securing a releasable structure to a stationary structure, said mechanism comprising:

a base portion including three equally spaced rails extending radially outward from a center of the base portion and an opening extending through the center of the base portion;

a rotatable portion rotatably mounted to the base portion and including an opening in axial alignment with the opening in the base portion, said releasable structure extending through the openings and said rotatable portion including a bottom surface having a cam indentation; and

three release balls positioned between the base portion and the rotatable portion so that one of the release balls is ridable on each of the rails and all of the release balls are positioned within the cam indentation, said cam indentation being configured so that as the rotatable portion is rotated relative to the base portion the cam indentation causes the release balls to move along the rails to the center and allows the release balls to move outward away from the center in unison with each other so that when the release balls are at an end of the rails proximate to the center of the base portion the mechanism holds the releasable structure and when the release balls are at an end of the rails opposite to the center of the base portion the mechanism releases the releasable structure.

10. The release mechanism according to claim 9 wherein the cam indentation includes three equally spaced pockets that the release balls are positioned in when the balls are at the end of the rails opposite to the center of the base portion, and radii surfaces between the pockets that the release balls are positioned against when the balls are at the end of the rails proximate to the center of the base portion.

11. The release mechanism according to claim 9 wherein the base portion includes a stop block and the rotatable portion includes a tab, said tab engaging the stop block when the rotatable portion is rotated to either hold the release balls at an end of the rails proximate to the center of the base portion or hold the release balls at an end of the rails opposite to the center of the base portion.

12. The release mechanism according to claim 11 wherein the stop block is secured to the base portion by a pull pin.

13. The release mechanism according to claim 9 wherein the rotatable portion includes a nut that accepts a wrench for rotating the rotatable portion.

14. The release mechanism according to claim 9 wherein the base portion is square and the rotatable portion is round.

15. A release joint assembly comprising:

a stationary structure including an opening;

a releasable structure;

a bolt secured to the releasable structure and extending through the opening in the stationary structure; and

a release mechanism for releasing the releasable structure from the stationary structure, said release mechanism including a base portion having a center opening and a plurality of equally spaced rails extending radially outward from the center opening of the base portion, a rotatable portion rotatably mounted to the base portion, said rotatable portion including a center opening in axial alignment with the center opening in the base portion and a bottom surface having a cam indentation, said bolt extending through the axially aligned center openings, and a plurality of release balls positioned between the base portion and the rotatable portion so that one of the release balls is ridable on each of the rails and all of the release balls are positioned within the cam indentation, said cam indentation being configured so that as the rotatable portion is rotated relative to the base portion the cam indentation causes the release balls to move along the rails to the center and allows the release balls to move outward away from the center in unison with each other in manner so that the release structure is secured to the stationary structure when the release balls are positioned proximate the center openings and the release structure is released from the stationary structure when the release balls are at an end of the rails opposite to the center openings.

16. The joint assembly according to claim 15 wherein the plurality of rails is three rails extending radially outward at 120° relative to each other and the number of release balls is three release balls.

17. The joint assembly according to claim 16 wherein the cam indentation includes three equally spaced pockets that the release balls are positioned in when the balls are at an end of the rails opposite to the center of the base portion, and radii surfaces between the pockets that the release balls are positioned against when the balls are at an end of the rails proximate to the center of the base portion.

18. The joint assembly according to claim 15 wherein the base portion includes a stop block and the rotatable portion includes a tab, said tab engaging the stop block when the rotatable portion is rotated to either hold the release balls at an end of the rails proximate to the center of the base portion or hold the release balls at an end of the rails opposite to the center of the base portion.

19. The joint assembly according to claim 18 wherein the stop block is secured to the base portion by a pull pin.

20. The joint assembly according to claim 15 wherein the rotatable portion includes a nut that accepts a wrench for rotating the rotatable portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 20, 2020
From: SABO, SCOTT G.
To: NORTHROP GRUMMAN SYSTEMS CORPORATION
Reel/Frame 052441/0070 →
Continuity (1)
Related Publication 20210324888A1 · Oct 21, 2021
Cited By (1)
US 12,297,853