Claims
- 1. A movement actuator comprising
an elongate fiber made of a flexible material, a strip of actuable material disposed on the surface of the side of the fiber, said actuable material being responsive to an actuation signal for changing its shape to thereby cause the fiber to move to accommodate the change in shape of the actuable strip, and means for selectively applying actuation signals to the strip of actuable material.
- 2. An actuator as in claim 1 wherein said fiber is anchored at one end, and wherein the free end of the fiber is caused to move in response to the change in shape of the strip of actuable material.
- 3. An actuator as in claim 1 wherein the material of the fiber is selected from the group consisting of flexible ceramic, metal, and plastic.
- 4. An actuator as in claim 1 wherein said actuable material is comprised of shape memory alloy responsive to the application of electric current for changing its shape, and wherein said actuation signal comprises electric current.
- 5. An actuator as in claim 1 wherein said actuable material is comprised of a bimetal strip made of at least two metals having different coefficients of thermal expansion, and responsive to the application of heat for changing its shape, and wherein said actuation signal comprises a heating medium.
- 6. An actuator as in claim 1 wherein said strip of actuable material is disposed to extend longitudinally on one side of the fiber to cause the fiber to bend in an imaginary plane which extends through the strip and fiber, in response to the actuation signals.
- 7. An actuator as in claim 1 wherein said strip of actuable material is disposed to extend helically about the fiber to cause the fiber to twist in response to the actuation signals.
- 8. An actuator as in claim 1 further comprising additional strips of actuable material disposed at longitudinally spaced-apart locations along the fiber, and wherein said actuation signal applying means includes means for selectively applying actuation signals to the additional strips to cause bending of the fiber at selected locations.
- 9. A movement actuator comprising
an elongate bar made of a piezoelectric material and anchored at one end, conductive elements disposed on a side of the bar so that as voltages are applied to the elements, the bar is caused to move, and means for selectively supplying voltages to the elements.
- 10. An actuator as in claim 9 wherein said conductive elements are disposed generally in a longitudinally array on one side of the bar, and wherein said voltage supplying means includes means for supplying voltages of one polarity to certain ones of the elements, and for supplying voltages of opposite polarity to the other elements, to thereby cause the bar to bend.
- 11. An actuator as in claim 9 wherein said conductive elements are disposed at circumferentially spaced-apart locations about the bar, and wherein said voltage supplying means incudes means for supplying voltages of one polarity to certain ones of the elements, and for supplying voltages of opposite polarity to the other elements, to thereby cause the bar to selectively shorten and lengthen.
- 12. A movement sensor comprising
a flexible elongate object having elongate sidewalls, for bending in response to a force three or more strain gauge means disposed at spaced-apart locations circumferentially on the sidewalls, each for producing signals indicative of the strain at the sidewall location of said each strain gauge means, and means for processing the signals produced by the strain gauge means to determine the degree and direction of bending of the object.
- 13. A rotational movement actuator comprising
a base, a plurality of elongate, flexible bars having fixed ends attached to the base at circumferentially spaced-apart locations to extend outward, generally in parallel, from the base, cap means coupling the free ends of the bars in fixed relationship, a plurality of actuable means, each disposed on a respective rod on a side in line with the circumferential spacing of the rods and responsive to actuation signals for causing the bending of the respective rod in a direction in line with the circumferential spacing, and means for applying actuation signals to the actuable means to cause bending of the rods and thus rotation of the cap means.
- 14. An actuator comprising
an elongate element of flexible material, a strip of actuable material disposed on the surface of one side of the element, said actuable material being responsive to an actuation signal for changing its shape to thereby cause the element to bend in an imaginary plane which extends through the strip and element, sensor means disposed on the surface of the other side of the element to develop a signal indicating the strain occurring at said surface of the other side, feedback control means responsive to said strain indicating signal and a target bend signal for supplying an actuation signal to the actuable material to cause bending until the strain indicating signal reaches a certain level relative to the target bend signal, and means for selectively supplying a target bend signal to the feedback control means.
- 15. An electricity generator comprising
an elongate, flexible filament, made of piezoelectric material, and disposed in an arc-shaped locus of points to rotate about the locus, means for causing the filament to rotate to thereby cause development of voltages in the filament, and wiper means disposed in sliding contact with the filament to conduct the voltages developed in the filament.
- 16. A valve comprising
a flexible tube closed at one end and open at the other for receiving a fluid, said tube having a slit in a sidewall extending from the interior to the exterior, and being closed when the tube is untwisted and open when the tube is twisted, an actuable strip disposed to extend helically about the tube, said actuable strip being responsive to an actuation signal for changing its shape to thereby cause the tube to twist and open the slit, and being responsive to removal of the actuation signal for returning to its original shape to untwist the tube and close the slit, and means for selectively applying an actuation signal to and removing the actuation signal from the actuable strip.
- 17. A valve comprising
a pair of flexible tubes positioned end to end in a colinear relationship so that adjacent ends are in contact to generally seal the inside from the outside of the tubes when the tube ends are undeflected, and so that the inside is exposed to the outside when the adjacent tube ends are deflected laterally, actuation means disposed on the sides of the two tubes, and responsive to actuation signals for deflecting adjacent tube ends laterally, means for selectively applying actuation signals to the actuation means, and means for introducing fluid into the tubes to remain in the tubes when adjacent tube ends are undeflected, and to flow out of the tubes from between adjacent tube ends when adjacent tube ends are deflected laterally.
- 18. A valve comprising
an elongate enclosure having an open end and a closed end, an elongate flexible rod disposed in the enclosure to extend from the closed end to the open end, actuation means disposed on the bar and responsive to an actuation signal for causing the bar to move in a predetermined manner, plug means disposed on the end of the bar at the open end of the enclosure to cover and seal the open end when the bar is caused to move by the actuation means, and to uncover and unseal the open end when the bar is not caused to move, means for selectively applying an actuation signal to the actuation means, and means for supplying fluid to the inside of the enclosure to remain in the enclosure when the open end is covered and to flow out of the enclosure when the open end is uncovered.
- 19. A system for determining acceleration comprising
a housing an elongate flexible rod disposed in the housing, one end being attached to the housing and the other end being free to move when the housing is accelerated, and means disposed in the housing for determining the direction and degree of movement of the rod when the housing is accelerated.
- 20. A system as in claim 19 wherein said determining means comprises
field developing means disposed at the other end of the bar opposite the attached end, and field detecting means disposed in the housing near the field developing means to detect the strength of the field developed at a plurality of locations circumscribing said other end of the bar, to thereby detect the direction and degree of movement of the bar.
- 21. A system as in claim 19 wherein said rod is made of a piezoelectric material, and wherein said determining means comprises
conductive means disposed on the sides of the rod between which voltages are developed when the rod is moved, as a result of acceleration of the housing, and means for determining the location and magnitude of voltages developed in the rod to thereby determine the direction and degree of movement of the bar.
Parent Case Info
[0001] This is a continuation-in-part of application Ser. No. 07/816,628 filed Dec. 31, 1991.
Divisions (3)
|
Number |
Date |
Country |
Parent |
08744381 |
Nov 1996 |
US |
Child |
10386375 |
Mar 2003 |
US |
Parent |
08480018 |
Jun 1995 |
US |
Child |
08744381 |
Nov 1996 |
US |
Parent |
07898216 |
Jun 1992 |
US |
Child |
08480018 |
Jun 1995 |
US |
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
07816628 |
Dec 1991 |
US |
Child |
07898216 |
Jun 1992 |
US |
Parent |
07647659 |
Jan 1991 |
US |
Child |
07816628 |
Dec 1991 |
US |