Claims
- 1. A motion damper, comprising:
a damper wall having a first end; and at least two damper stages, each damper stage being flexibly attached to at least one adjacent damper stage, one of the damper stages being flexibly attached to the first end of the damper wall, wherein the damper wall and damper stages are of a successively smaller size.
- 2. The motion damper of claim 1, wherein upon the application of a force, at least one damper stage changes in position relative to an adjacent damper stage.
- 3. The motion damper of claim 1, wherein each damper stage is flexibly attached to an adjacent damper stage such that the damper stages upon the application of a force, telescopically extend away from the damper wall.
- 4. The motion damper of claim 1, wherein the damper stages are made from an energy absorbing material.
- 5. The motion damper of claim 4, wherein the energy absorbing material is plastic.
- 6. The motion damper of claim 4, wherein the energy absorbing material is metal.
- 7. The motion damper of claim 1, wherein at least one damper stage is sized to fit within an adjacent damper stage.
- 8. The motion damper of claim 1, wherein the damper wall and damper stages have a nested relationship prior to deployment.
- 9. The motion damper of claim 1, wherein the damper wall and damper stages are integrally formed.
- 10. The motion damper of claim 1, wherein the damper stages are single-acting damper stages.
- 11. A dampened actuator comprising:
a linear actuator having a fluid generator, an actuator wall, at least two piston stages, a piston head, and an interior chamber defined at least in part by the actuator wall and piston stages, each piston stage being flexibly attached to at least one adjacent piston stage, one of the piston stages being flexibly attached to the actuator wall and another piston stage being attached to the piston head, the actuator wall and the piston stages being of a successively smaller size, and the fluid generator being in fluid communication with the interior chamber; and a motion damper having a damper wall, at least two damper stages, and a damper head, each damper stage being flexibly attached to at least one adjacent damper stage, one of the damper stages being flexibly attached to the damper wall and another damper stage being attached to the damper head, the damper wall and damper stages being of a successively smaller size, and the damper head being attached to the piston head.
- 12. The dampened actuator of claim 11, wherein upon the application of a force, at least one damper stage changes in position relative to an adjacent damper stage.
- 13. The dampened actuator of claim 11, wherein each damper stage is flexibly attached to an adjacent damper stage such that upon the application of a force, the damper stages telescopically extend away from the damper wall.
- 14. The dampened actuator of claim 11, wherein the damper stages are made from an energy absorbing material.
- 15. The dampened actuator of claim 11, wherein the piston stages deploy in response to activation of the fluid generator.
- 16. The dampened actuator of claim 11, wherein at least one damper stage is sized to fit within an adjacent damper stage.
- 17. The dampened actuator of claim 11, wherein the damper wall and damper stages have a nested relationship prior to deployment.
- 18. The dampened actuator of claim 11, wherein the linear actuator is a single-acting linear actuator.
- 19. The dampened actuator of claim 11, wherein the motion damper is a single-acting motion damper.
- 20. The dampened actuator of claim 11, wherein the damper wall, damper stages, and damper head are integrally formed.
- 21. The dampened actuator of claim 11, wherein the actuator wall, piston stages, and piston head are integrally formed.
- 22. A dampened actuator for use in a vehicle comprising:
a linear actuator having a fluid generator, an actuator wall, at least two piston stages, a piston head, and an interior chamber defined at least in part by the actuator wall and piston stages, each piston stage being flexibly attached to at least one adjacent piston stage, one of the piston stages being flexibly attached to the actuator wall and another piston stage being attached to the piston head, the actuator wall and piston stages being of a successively smaller size, the fluid generator being in fluid communication with the interior chamber, and the linear actuator being connected to a first part of a vehicle; and a motion damper having a damper wall, at least two damper stages, and a damper head, each damper stage being flexibly attached to at least one adjacent damper stage, one of the damper stages being flexibly attached to the damper wall and another damper stage being attached to the damper head, the damper wall and damper stages being of a successively smaller size, the damper head being attached to the piston head, and the motion damper being connected to a second part of the vehicle.
- 23. The dampened actuator of claim 22, wherein upon the application of a force, at least one damper stage changes in position relative to an adjacent damper stage.
- 24. The dampened actuator of claim 22, wherein each damper stage is flexibly attached to an adjacent damper stage such that upon the application of a force, the damper stages telescopically extend away from the damper wall.
- 25. The dampened actuator of claim 22, wherein the piston stages deploy in response to activation of the fluid generator.
- 26. The dampened actuator of claim 22, wherein at least one damper stage is sized to fit within an adjacent damper stage.
- 27. The dampened actuator of claim 22, wherein the damper wall and damper stages have a nested relationship prior to deployment.
- 28. The dampened actuator of claim 22, wherein the motion damper is a single-acting motion damper.
- 29. The dampened actuator of claim 22, wherein the linear actuator is a single-acting linear actuator.
- 30. The dampened actuator of claim 22, wherein the linear actuator and motion damper are coaxial.
- 31. The dampened actuator of claim 22, wherein the first part of the vehicle is pivotally attached to the vehicle.
- 32. The dampened actuator of claim 31, wherein the first part of the vehicle is a seat.
- 33. The dampened actuator of claim 31, wherein the first part of the vehicle is a hood.
- 34. The dampened actuator of claim 22, wherein the damper wall, damper stages, and damper head are integrally formed.
- 35. The dampened actuator of claim 22, wherein the actuator wall, piston stages, and piston head are integrally formed.
RELATED APPLICATIONS
[0001] This application is a continuation-in-part of co-pending patent application Ser. No. 10/193,414 filed Jul. 11, 2002 and entitled Linear Actuator, which is incorporated herein by this reference.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
10193414 |
Jul 2002 |
US |
Child |
10701734 |
Nov 2003 |
US |