IP Library Granted Patent US 11,518,552
Granted Patent B2
US 11,518,552 · App. 16/731,255 · Granted Dec 6, 2022

Omni-directional extensible grasp mechanisms

Inventors: Evan Robert Ulrich (Manhattan Beach, CA); Samuel Takezo Shimohara (Gardena, CA)
Assignee: THE AEROSPACE CORPORATION
B64G4/00B25J15/0028B64G1/646B64G2004/005
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Quick Facts
Patent No.
US 11,518,552
App. No.
16/731,255
Granted
Dec 6, 2022
Kind
B2
Abstract

Omni-directional, extensible grasp mechanisms are disclosed. Such grasp mechanisms may be used as a robotic end effector for docking, grasping, and manipulating space structures, or to interconnect other structures or vehicles. Novel interconnected lattice structures may enable large arrays to be assembled. The grasp mechanisms may be used to create structures from parallel docking linkages. This may enable reconfiguration of multiple docked space vehicles and/or structures without the use of propellant. The grasp mechanisms have the ability to make and break connections multiple times, enabling a nondestructive and reversible docking process.

Claims (70)

1. An apparatus, comprising:

a chassis;

an interface plate integrally formed with or operably connected to the chassis, the interface plate comprising a plurality of grasper target rods; and

a plurality of grasper claws operably connected to the chassis, the plurality of grasper claws configured to connect to or disconnect from respective grasper target rods of another apparatus, wherein

the plurality of grasper claws are operably connected to one or more portions of the chassis other than the interface plate.

2. The apparatus of claim 1 , wherein the chassis comprises a plurality of holes to reduce chassis weight, provide vias for wiring, or both.

3. The apparatus of claim 1 , wherein the chassis comprises a box shape.

4. The apparatus of claim 3 , wherein the plurality of grasper claws are located on two opposite faces of the chassis, and a remaining four faces of the chassis do not have grasper claws.

5. The apparatus of claim 1 , further comprising:

one or more motors, wherein

each of the one or more motors is operably connected to a grasper claw of the plurality of grasper claws by a respective shaft and configured to connect the apparatus to and disconnect the apparatus from the other apparatus by moving the respective grasper claw.

6. The apparatus of claim 1 , wherein the interface plate further comprises a plurality of alignment guides configured to assist with aligning the apparatus when the apparatus is interconnected with the other apparatus.

7. The apparatus of claim 1 , wherein the apparatus comprises two pairs of grasper claws on opposite sides of the apparatus.

8. The apparatus of claim 7 , wherein

each of the plurality of grasper claws comprises a gear, and

one grasper claw of each pair of grasper claws has a thinner gear than the other grasper claw of the pair.

9. The apparatus of claim 8 , wherein

the grasper claws each comprise a grasping extension, and

the grasping extension is a width of the thinner gear.

10. The apparatus of claim 8 , wherein the thinner gear at most half a thickness of a thicker gear of the pair of grasper claws.

11. The apparatus of claim 8 , wherein

the grasper claws each comprise a grasping extension, and

the grasping extensions of each pair of grasper claws are configured to pass next to one another when interconnecting with the other apparatus.

12. The apparatus of claim 1 , wherein

each grasper claw of the plurality of grasper claws comprises a notch configured to engage with a respective grasper target rod of the other apparatus.

13. The apparatus of claim 1 , wherein

the interface plate comprises two grasper target rods, and

each grasper target rod is on an opposite side of the interface plate.

14. A grasp mechanism, comprising:

at least two grasper target rods operably connected to an interface plate of a chassis; and

two pairs of grasper claws operably connected to the chassis, the two pairs of grasper claws configured to connect to or disconnect from respective grasper target rods of another grasp mechanism, wherein

each of the pairs of grasper claws comprises a gear and a grasping extension,

the grasping extension comprises a notch configured to engage with a respective grasper target rod of the other grasp mechanism, and

the grasping extensions of each pair of grasper claws are configured to pass next to one another when interconnecting with the other grasp mechanism.

15. The grasp mechanism of claim 14 , further comprising:

a chassis; and

an interface plate integrally formed with or operably connected to the chassis, the interface plate comprising the plurality of grasper target rods.

16. The grasp mechanism of claim 15 , wherein the chassis comprises a plurality of holes to reduce chassis weight, provide vias for wiring, or both.

17. The grasp mechanism of claim 15 , wherein the chassis comprises a box shape.

18. The grasp mechanism of claim 17 , wherein the plurality of grasper claws are located on two opposite faces of the chassis, and a remaining four faces of the chassis do not have grasper claws.

19. The grasp mechanism of claim 15 , wherein the interface plate further comprises a plurality of alignment guides configured to assist with aligning the grasp mechanism when the grasp mechanism is interconnected with the other grasp mechanism.

20. The grasp mechanism of claim 14 , further comprising:

one or more motors, wherein

each of the one or motors is operably connected to a grasper claw of the two pairs of grasper claws by a respective shaft and configured to connect the grasp mechanism to and disconnect the grasp mechanism from the other grasp mechanism by moving the respective grasper claw.

21. The grasp mechanism of claim 14 , wherein

one grasper claw of each pair of grasper claws has a thinner gear than the other grasper claw of the pair, and

the thinner gear is at most half a thickness of a thicker gear of the pair of grasper claws.

22. A grasp mechanism, comprising:

a chassis;

an interface plate integrally formed with or operably connected to the chassis, the interface plate comprising a pair of grasper target rods; and

a plurality of pairs of grasper claws operably connected to the chassis, the plurality of grasper claws configured to connect to or disconnect from respective grasper target rods of another grasp mechanism, wherein

the plurality of grasper claws are operably connected to one or more portions of the chassis other than the interface plate.

23. The grasp mechanism of claim 22 , wherein each grasper target rod of the pair of grasper target rods is located on an opposite side of the interface plate.

24. The grasp mechanism of claim 22 , wherein

each of the plurality of grasper claws comprises a gear and a grasping extension,

the grasping extension comprises a notch configured to engage with a respective grasper target rod of the other grasp mechanism, and

the grasping extensions of each pair of grasper claws are configured to pass next to one another when interconnecting with the other grasp mechanism.

25. The grasp mechanism of claim 22 , wherein the chassis comprises a plurality of holes to reduce chassis weight, provide vias for wiring, or both.

26. The grasp mechanism of claim 22 , wherein the chassis comprises a box shape.

27. The grasp mechanism of claim 26 , wherein

the grasper mechanism comprises two pairs of grasper claws, and

the plurality of grasper claws are located on two opposite faces of the chassis, and a remaining four faces of the chassis do not have grasper claws.

28. The grasp mechanism of claim 22 , wherein the interface plate further comprises a plurality of alignment guides configured to assist with aligning the grasp mechanism when the grasp mechanism is interconnected with the other grasp mechanism.

29. The grasp mechanism of claim 22 , further comprising:

one or more motors, wherein

each of the one or motors is operably connected to a grasper claw of the plurality of pairs of grasper claws by a respective shaft and configured to connect the grasp mechanism to and disconnect the grasp mechanism from the other grasp mechanism by moving the respective grasper claw.

30. The grasp mechanism of claim 22 , wherein

each grasper claw of the plurality of pairs of grasper claws comprises a gear,

one grasper claw of each pair of grasper claws has a thinner gear than the other grasper claw of the pair, and

the thinner gear is at most half a thickness of a thicker gear of the pair of grasper claws.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 31, 2019
From: ULRICH, EVAN ROBERT; SHIMOHARA, SAMUEL TAKEZO
To: THE AEROSPACE CORPORATION
Reel/Frame 051391/0598 →
Continuity (1)
Related Publication 20210197990A1 · Jul 1, 2021
Cited By (1)
US 12,612,189