Claims
- 1. A method for impregnating a pressure conduction composite with an additive comprising the step of suffusing said pressure conduction composite within a bath of said additive.
- 2. A current control device comprising:
(a) two electrodes; and (b) a pressure conduction composite disposed between said electrodes, said electrodes communicating a compressive load applied onto said electrodes into said pressure conduction composite, said pressure conduction composite is porous and filled with a temperature sensitive material capable of exerting a temperature dependent force.
- 3. The current control device of claim 2, wherein said electrodes are porous.
- 4. A current control device comprising:
(a) a pressure plate electrically nonconductive and movable; (b) a plate electrically nonconductive and immovable; and (c) a pressure conduction composite disposed between said pressure plate and said plate, said pressure plate communicating a compressive load applied onto said pressure plate into said pressure conductive composite.
- 5. The current control device of claim 4, wherein said pressure plate, said plate, and said pressure conduction composite are porous.
- 6. The current control device of claim 4, furthering comprising two electrodes separately disposed, said pressure conduction composite contacting said electrodes and providing an electrical path between said electrodes when compressed.
- 7. A current control device comprising:
(a) at least two pressure plates electrically nonconductive and movable; (b) a pressure conduction composite disposed between said pressure plates, said pressure plates communicating a compressive load applied onto said pressure plates into said pressure conductive composite.
- 8. The current control device of claim 7, wherein said pressure plates and said pressure conduction composite are porous.
- 9. The current control device of claim 7, furthering comprising two electrodes separately disposed, said pressure conduction composite contacting said electrodes and providing an electrical path between said electrodes when compressed.
- 10. A current control device comprising:
(a) four pressure switches, each said pressure switch comprised of a pressure conduction composite disposed between two conductive pressure plates; (b) two electrodes, each said electrode aligned in series between two said pressure switches, said pressure switches electrically connected whereby said electrodes are electrically connected parallel; (c) two nonconductive pressure plates, said nonconductive pressure plates communicating a compressive load into said pressure switches; and (d) a restoration element disposed between said electrodes and electrically isolated from said electrodes, said restoration element decompressing said pressure switches when said compressive load is removed.
- 11. The current control device of claim 10, further comprising at least two said devices electrically connected parallel.
- 12. The current control device of claim 11, further comprising a current measuring device electrically connected to said current control device.
- 13. The current control device as in one of claims 2-11, further comprising at least one actuator comprised of a peizoelectric material, said actuator applies said compressive load.
- 14. The current control device as in one of claims 2-11, further comprising at least one actuator comprised of a peizoceramic material, said actuator applies said compressive load.
- 15. The current control device as in one of claims 2-11, further comprising at least one actuator comprised of an electrostrictive material, said actuator applies said compressive load.
- 16. The current control device as in one of claims 2-11, further comprising at least one actuator comprised of an magnetostrictive material, said actuator applies said compressive load.
- 17. The current control device as in one of claims 2-11, further comprising at least one actuator comprised of a shape memory alloy, said actuator applies said compressive load.
- 18. The current control device as in one of claims 2-11, further comprising at least one piezo-controlled pneumatic actuator, said actuator applies said compressive load.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a divisional application of co-pending application Ser. No. 10/072,587, filed Feb. 8, 2002 and claims the benefit of U.S. Provisional Application No. 60/267,306 filed on Feb. 8, 2001. The subject matters of the prior applications are incorporated in their entirety herein by reference thereto.
FEDERALLY SPONSORED RESEARCH OR DEVELOPMENT
[0002] This invention was made with government support under Contract No. N00024-01-C-4034 awarded by the United States Navy.
Divisions (1)
|
Number |
Date |
Country |
Parent |
10072587 |
Feb 2002 |
US |
Child |
10674712 |
Sep 2003 |
US |