IP Library › Granted Patent US 11,802,606
Granted Patent B2
US 11,802,606 · App. 16/877,480 · Granted Oct 31, 2023

Planate dynamic isolator

Inventors: Richard W. Aston (Brea, CA); Matthew Joseph Herrmann (Rancho Palos Verdes, CA); Christopher David Joe (Arcadia, CA); Manav Hemal Sanghvi (Hermosa Beach, CA)
Assignee: The Boeing Company
F16F15/08B64G1/641B64G1/645F16M13/02B64G2001/228
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Quick Facts
Patent No.
US 11,802,606
App. No.
16/877,480
Granted
Oct 31, 2023
Kind
B2
Abstract

A vibration isolation system is disclosed, including a rigid retaining device having an internal space, a first external side, and a second external side. A rigid anchoring device is retained in the internal space of the rigid retaining device. The anchoring device has a linkage member that extends from the internal space to the first external side of the retaining device and is configured for rigid connection to a first apparatus. The second side of the retaining device is configured for attachment to a second apparatus. A damping material is sandwiched between the retaining device and the anchoring device, and is configured to limit transfer of vibration between the retaining device and the anchoring device.

Claims (39)

1. A vibration isolation system for coupling an object to a carrier, comprising:

a rigid retaining device having an internal space, a first external side, and a second external side, formed by a first ring structure and a second ring structure,

a rigid anchoring device which includes a third ring structure retained in the internal space of the rigid retaining device, between the first ring structure and the second ring structure, wherein:

the anchoring device has multiple linkage members extending from the internal space to the first external side of the retaining device and configured for rigid connection to a first apparatus, and

the second side of the retaining device is configured for attachment to a second apparatus, and

a damping material sandwiched between the retaining device and the anchoring device configured to limit transfer of vibration between the retaining device and the anchoring device.

2. The vibration isolation system of claim 1 , wherein the first apparatus includes a separation device configured for mounting an object to a carrier during a launch phase, and releasing the object from the carrier in space.

3. The vibration isolation system of claim 1 , wherein the first apparatus includes a satellite configured for orbiting an astronomical body.

4. The vibration isolation system of claim 1 , wherein the second apparatus includes a launch vehicle configured to carry an object from a planetary surface into space.

5. The vibration isolation system of claim 1 , wherein the first ring structure has a circumferential protrusion, the second ring structure having a circumferential recess configured to receive the protrusion of the first ring structure.

6. The vibration isolation system of claim 1 , wherein the first ring structure includes a first aperture and the second ring structure includes a second aperture aligned with the first aperture, and the first and second apertures are configured to receive a fastener extending from the second apparatus.

7. The vibration isolation system of claim 1 , wherein the third ring structure has an external surface, the damping material substantially covering the entire external surface of the third ring structure.

8. The vibration isolation system of claim 7 , wherein the damping material surrounds each of the multiple linkage members.

9. The vibration isolation system of claim 1 , wherein the anchoring device includes multiple segment members, each segment member connected to a linkage member extending to the first external side of the retaining device.

10. The vibration isolation system of claim 1 , wherein one or both of the retaining device and anchoring device is comprised of laser sintered metal alloy.

11. The vibration isolation system of claim 1 , wherein the linkage member is configured to receive a fastener extending from the first apparatus.

12. A vibration isolation system for coupling a satellite to a launch vehicle, comprising:

a separation device configured for carrying a satellite in a launch vehicle during a launch phase and releasing the satellite from the launch vehicle in space, and

a vibration isolating assembly rigidly connected to the separation device, the vibration isolating assembly including:

a rigid retaining device having an internal space,

a rigid anchoring device, including a footing portion retained in the internal space of the rigid retaining device and multiple linkage members extending from the internal space of the retaining device to an external side of the retaining device, and

a damping material sandwiched between the retaining device and the anchoring device, configured to limit transfer of vibration between the launch vehicle and the separation device, wherein the damping material covers substantially an entire external surface of the footing portion.

13. The vibration isolation system of claim 12 , wherein the linkage member is rigidly connected to the separation device.

14. A method of carrying a satellite to space, comprising:

coupling a dynamic isolator assembly to a separation device, wherein:

the dynamic isolator assembly includes a retaining device having an internal space, an anchoring device retained in the internal space of the retaining device, and a damping material sandwiched between the retaining device and the anchoring device,

the retaining device includes a first ring structure and a second ring structure,

the anchoring device is retained between the first ring structure and the second ring structure, and

the anchoring device includes a third ring structure and multiple linkage members extending from the internal space to a first external side of the retaining device, and

mounting a satellite to a carrier via the dynamic isolator and separation device.

15. The method of claim 14 , wherein

the third ring structure has an external surface, the damping material substantially covering the entire external surface of the third ring structure.

16. The method of claim 14 , wherein the mounting step includes connecting the separation device to the satellite.

17. The method of claim 14 , further comprising:

propelling the carrier to space, and

releasing the satellite from the carrier.

18. The vibration isolation system of claim 1 , wherein the rigid retaining device is connected to the rigid anchoring device only through the damping material.

19. The vibration isolation system of claim 1 , wherein each linkage member is centered relative to an annular extent of the third ring.

20. The vibration isolation system of claim 12 , wherein the rigid retaining device is formed by a first ring structure and a second ring structure, and footing portion of the rigid anchoring device is a third ring structure retained between the first ring structure and the second ring structure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 19, 2020
From: ASTON, RICHARD W.; HERRMANN, MATTHEW JOSEPH; JOE, CHRISTOPHER DAVID; SANGHVI, MANAV HEMAL
To: THE BOEING COMPANY
Reel/Frame 052693/0721 →
Continuity (1)
Related Publication 20210356015A1 · Nov 18, 2021