Claims
- 1. An exercise apparatus comprising:
- a guide having an axis;
- a first reciprocating member slidingly coupled to the guide;
- a second reciprocating member slidingly coupled to the guide;
- wherein the first and second reciprocating members slide along the axis of the guide;
- wherein the first and second reciprocating members are slidingly coupled to the guide for alternately reciprocating movement relative to each other; and
- isokinetic means, coupled to the first and second reciprocating members, for moving the first and second reciprocating members isokinetically in response to a force applied by a user to the first and second reciprocating members, the isokinetic means comprising:
- first fluid compression means, coupled to the first reciprocating member, for compressing a fluid in response to the force applied by the user to the first reciprocating member;
- second fluid compression means, coupled to the second reciprocating member, for compressing the fluid in response to the force applied by the user to the second reciprocating member; and
- fluid flow regulating means, in fluid communication with the first and second fluid compression means, for controlling fluid flow from the first and second fluid compression means for moving the first and second reciprocating members when the user applies the force to the first or second reciprocating member;
- wherein the fluid flow regulating means comprises:
- a first servo valve assembly having a first servo valve spool fitted within a first servo valve bore, the first servo valve bore having a first servo valve fluid inlet in fluid communication with the first fluid compression means and a first servo valve fluid outlet, the first servo valve spool being capable of moving between a first servo spool position, wherein fluid flows between the first servo valve fluid inlet and the first servo valve fluid outlet through a first servo valve orifice area defined by the servo valve spool and a servo valve seat, and a second servo spool position, wherein fluid flows between the first servo valve fluid inlet and the first servo valve fluid outlet through a second servo orifice area defined by the first servo valve spool and the servo valve seat, the second servo orifice area being less than the first servo orifice area;
- velocity setting means for selecting an isokinetic velocity value for the first and second reciprocating members; and
- first servo valve control means, coupled to the first servo valve assembly and to the velocity setting means, for controlling the position of the first servo valve spool so that fluid flows between the first servo valve fluid inlet and the first servo fluid valve outlet at a constant rate.
- 2. The apparatus according to claim 1 wherein the first servo valve control means comprises a first control valve assembly having a first control valve spool fitted within a first control valve bore, the first control valve bore having a first control valve fluid inlet in fluid communication with the first servo valve outlet and a first control valve fluid outlet, the first control valve spool being capable of moving between a first control spool position, wherein fluid flows between the first control valve fluid inlet and the first control valve fluid outlet through a first control valve orifice area defined by the first control valve spool and a first control valve seat, and a second control spool position, wherein fluid flows between the first control valve fluid inlet and the first control valve fluid outlet through a second control valve orifice area defined by the first control valve spool and the first control valve seat, the second control valve orifice area being less than the first control valve orifice area; and
- wherein the velocity setting means includes first control valve spool position limiting means, coupled to the velocity setting means, for limiting the first control spool position to a selected position.
- 3. The apparatus according to claim 2 wherein the first control valve assembly further comprises first control valve spool position maintaining means for maintaining the first control valve spool at the first control spool position.
- 4. The apparatus according to claim 3 wherein the first control valve spool position maintaining means comprises control valve spool biasing means for biasing the first control valve spool toward the first control spool position.
- 5. The apparatus according to claim 4 wherein the first control valve spool includes a first control valve spool piston portion having a free end spaced apart from the first control valve seat and sealingly fitted within the first control valve bore, and wherein the first control valve spool position maintaining means includes an equalizing passage for coupling fluid pressure from the first control valve fluid inlet to the free end of the first control valve spool piston portion.
- 6. The apparatus according to claim 5 wherein the fluid flow regulating means further comprises first servo valve spool positioning means for moving the first servo valve spool toward the second servo spool position when fluid pressure in the first servo valve fluid inlet increases.
- 7. The apparatus according to claim 6 wherein the first servo valve spool includes a first servo valve spool piston portion having a free end spaced apart from the first servo valve seat and sealingly fitted within the first servo valve bore, and wherein the first servo valve spool positioning means includes a pressure coupling passage for coupling fluid pressure from the first control valve fluid outlet to the free end of the first servo valve spool piston portion.
- 8. The apparatus according to claim 7 further comprising an accumulator valve assembly having an accumulator valve spool fitted within an accumulator valve bore, the accumulator valve bore having an accumulator valve fluid inlet in fluid communication with the first control valve fluid outlet and an accumulator valve fluid outlet, the accumulator valve spool being capable of moving between an open position, wherein fluid flows between the accumulator valve fluid inlet and the accumulator valve fluid outlet through an accumulator valve orifice area defined by the accumulator valve spool and an accumulator valve seat, and a closed position, wherein the accumulator valve spool abuts against the accumulator valve seat so that fluid flow between the accumulator valve fluid inlet and the accumulator valve fluid outlet is inhibited.
- 9. The apparatus according to claim 8 further comprising an accumulator in fluid communication with the accumulator valve fluid outlet for storing fluid flowing therefrom.
- 10. The apparatus according to claim 9 further comprising pressurizing means for pressurizing the fluid stored in the accumulator.
- 11. The apparatus according to claim 10 wherein the accumulator comprises a flexible container, and wherein the pressurizing means further comprises:
- a housing for the container; and
- housing pressure means for pressurizing the housing.
Parent Case Info
This is a continuation of application Ser. No. 07/473,281, filed Jan. 31, 1990, now abandoned.
US Referenced Citations (11)
Continuations (1)
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Number |
Date |
Country |
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473281 |
Jan 1990 |
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