Claims
- 1. A fluid energized double acting motor, comprising:
- (a) housing means forming an internal chamber;
- (b) piston means being disposed for reciprocation within said internal chamber and having a load operating extension movable in sealed relation through a wall of said housing for connection to a load, said piston means dividing said internal chamber into first and second chambers and presenting differing piston areas to said first and second chambers;
- (c) fluid supply means being in communication with said first and second chambers;
- (d) exhaust means in communication with said first chamber;
- (e) reversing valve means being positionable to block the flow of fluid from said fluid supply means to said first chamber, to communicate said exhaust means with said first chamber and to permit the flow of fluid from said fluid supply means to said second chamber for fluid pressure induced movement of said piston and load operating extension in one direction, said reversing valve means being oppositely positionable to block communication of said first chamber and said exhaust means and permit simultaneous communication of said fluid supply means with said first and second chambers for movement of said piston and load operating extension in the opposite direction, said reversing valve means being maintained at each blocking position thereof by the pressure of said fluid supply means;
- (f) valve operator means being operative to shift said reversing valve means between the blocking positions thereof and including means developing a shifting force on said reversing valve means increasing with piston movement until said shifting force overcomes pressure induced force acting on said reversing valve means and suddenly shifts said reversing valve means to the opposite blocking position thereof; and
- (g) driving fluid restriction means retarding initial load induced piston movement in said opposite direction to a sufficient extent permitting positive shifting and seating of said reversing valve by said shifting force developing means, thus preventing stalling and short cycling of said motor.
- 2. A fluid energized double acting motor as recited in claim 1, wherein said driving fluid restricting means comprises means restricting fluid flow from said second chamber means.
- 3. A fluid energized double acting motor as recited in claim 1, including a spring being interactive with said valve operator means and said piston means for compression thereof during fluid pressure induced movement of said piston means.
- 4. A fluid energized double acting motor as recited in claim 3, wherein said urging means comprises spring means providing a non-linear compression characteristic inducing a low spring force constant at initial contact with said reversing valve means and providing a greater spring force constant upon further movement of said piston toward said reversing valve means.
- 5. A fluid energized double acting motor as recited in claim 1, including:
- (a) a pair of spring stops being disposed in spaced relation; and
- (b) said shifting force developing means engages one of said spring stops near the end of piston movement in each direction thus translating piston movement into valve shifting force.
- 6. A fluid energized double acting motor as recited in claim 5, wherein:
- (a) valve trip means extends through said piston means and between said stop means; and
- (b) urging means is interactive between said valve trip means and is compressible upon movement of said valve trip means with said urging means restrained by said stop means.
- 7. A fluid energized double acting motor as recited in claim 1, wherein said reversing valve means comprises:
- (a) a first valve seat through which said fluid flows from said fluid supply means to said first chamber;
- (b) a second valve seat through which said fluid flows from said first chamber to said exhaust means;
- (c) first and second check valve elements being movable to and from seating engagement respectively with said first and second valve seats; and
- (d) said valve operator means controlling seating and unseating of said check valve elements responsive to piston movement and the pressure of said fluid.
- 8. A fluid energized double acting motor as recited in claim 7, wherein:
- (a) said first check valve element is a free floating ball check;
- (b) said second check valve element is a ball check; and
- (c) said valve operator means induces seating and unseating movement of said free floating ball check and seating and unseating movement of said second ball check.
- 9. A fluid energized double acting motor as recited in claim 7, wherein:
- (a) a pair of spring stops are located within said housing means and are disposed in spaced relation;
- (b) an elongated trip rod is interconnected at one extremity thereof with said second check valve element; and
- (c) spring means is positioned between said spring stops and engages respective spring stops near the opposed limits of piston travel thus inducing said shifting force to the closed one of said first and second check valve elements.
- 10. A fluid energized double acting motor as recited in claim 9, wherein valve shifter means is interposed between said first and second check valve elements and transmits said shifting force from said second check valve element to said first check valve element.
- 11. A fluid energized double acting motor as recited in claim 10, wherein said valve shifter means is an elongated shifter rod disposed for reciprocating movement within said housing means and has a length sufficient to prevent simultaneous seating of said first and second check valve elements.
- 12. A fluid energized double acting motor as recited in claim 1, wherein:
- (a) a pair of spring stops are located within said housing means and are disposed in spaced relation;
- (b) a compression spring is positioned between said spring stops; and
- (c) a pair of actuator elements are positioned at opposed ends of said compression spring, respective spring stops are engaged by respective actuator elements as said piston means nears respective limits of its travel, thus causing said compression spring to induce said shifting force to said valve operator means.
- 13. A fluid energized double acting motor as recited in claim 1, wherein:
- (a) said fluid supply means defines fluid supply passage means having a flow port; and
- (b) pressure responsive flow control means permitting unobstructed flow of fluid through said flow port when fluid supply pressure between said flow port and said first chamber means is above a predetermined minimum and restricting the flow of fluid through said flow port when fluid supply pressure between said flow port and said first chamber means is below said predetermined minimum.
- 14. A fluid energized double acting motor as recited in claim 1, wherein:
- (a) said fluid supply means includes supply passage means communicating directly with said second chamber and communicating through said reversing valve means with said first chamber; and
- (b) restriction means is disposed in said flow passage means between the connections thereof with said first and second chambers for restricting outflow from said second chamber.
- 15. A fluid energized double acting motor as recited in claim 14, wherein said restriction means provides for freer fluid flow into said second chamber than from said second chamber.
- 16. The improvement of claim 14, wherein said reversing valve means comprises:
- (a) first check valve means being a free floating check valve; and
- (b) second check valve means being supported by said valve operator means and being movable to and from its seated position by said valve operator means.
- 17. The apparatus of claim 1, wherein:
- (a) said fluid passage means defines an internal flow port of a dimension permitting unobstructed flow of fluid to the maximum volume required for operation of said fluid energized double acting motor; and
- (b) valve means is movably disposed within said fluid passage means and is movable to a restricting position restricting flow of fluid through said flow port and to an open position permitting flow of fluid through said flow port, said valve means being moved to said open position responsive to a minimum positive fluid pressure within said fluid passage between said valve and said fluid supply means and being automatically moved to said restricting position when fluid pressure within said fluid passage means between said valve and said fluid supply is less than said minimum positive pressure.
- 18. The apparatus of claim 17, wherein:
- spring means urges said valve means toward said closed position.
- 19. The apparatus of claim 1, wherein:
- (a) said fluid supply means defines a fluid supply passage receiving pressurized fluid and being in communication with said first and second chambers, said fluid supply passage forming a flow port; and
- (b) pressure responsive means being disposed in flow controlling relation with said fluid passage means, said pressure responsive means permitting unobstructed flow of fluid through said flow port responsive to the presence of at least a minimum positive fluid pressure within said fluid passage means between said flow port and said first chamber means and automatically restricting the flow of fluid through said flow port when fluid pressure within said fluid passage means between said flow port and said first chamber means is less than said minimum positive pressure.
- 20. In a fluid energized double acting reciprocating motor having a housing defining a cylinder and a piston dividing said cylinder into first and second chambers said piston presenting greater piston surface area to said first chamber than to said second chamber and including a load operated extension movable in sealed relation through a wall of said housing and being subject to application of external loads thereto, the improvement being a reversing valve mechanism comprising:
- (a) fluid supply passage means delivering pressurized actuating fluid from a supply to said first and second chambers;
- (b) exhaust passage means being communicated with said first chamber;
- (c) reversing valve means being movable to a first position exhausting operating fluid from said first chamber and being movable to a second position closing said exhaust and permitting introduction of pressurized operating fluid from said supply into said first chamber said reversing valve means being so positionable during valve reversal as to communicate said first chamber and said supply passage means with said exhaust passage means;
- (d) valve operator means being responsive to piston movement for automatically shifting said valve means between said first and second positions at the end of each piston stroke; and
- (e) said supply passage means being restricted sufficiently to retard the exhaust rate of fluid flow from said second chamber thus retarding load induced movement of said piston during shifting of said reversing valve to an extent permitting and maintaining positive shifting of said reversing valve by said valve operator means.
- 21. The apparatus of claim 20, wherein:
- (a) said fluid supply passage means defines a fluid supply passage receiving pressurized fluid and being in communication with said first and second chambers; and
- (b) pressure responsive means being disposed in flow controlling relation with said fluid passage means, said pressure responsive means permitting unobstructed flow of fluid through said flow port responsive to the presence of at least a minimum positive fluid pressure within said fluid passage means between said flow port and said first chamber means and automatically restricting the flow of fluid through said flow port when fluid pressure within said fluid passage means between said flow port and said first chamber means is less than said minimum positive pressure.
- 22. The improvement of claim 20, wherein said pressure responsive means is defined by a valve element movably positionable relative to said flow port.
- 23. The improvement of claim 20, wherein said reversing valve means includes first and second check valve means disposed in spaced independently actuatable relation.
- 24. The improvement of claim 23, wherein valve shifter means is interposed between said first and second check valve means and prevents simultaneous seating of said first and second check valve means, said valve shifter means is moved by said second check valve means for unseating of said first check valve means.
- 25. The improvement of claim 24, wherein said valve operator means includes:
- (a) an elongated trip rod having said second check valve means at one end thereof;
- (b) a pair of spring stops being located within said housing and are disposed in spaced relation; and
- (c) spring means being positioned between said spring stops and being compressed by respective ones of said spring stops upon movement of said piston to respective ends of its travel, thus increasing unseating force on the closed check valve means until the unseating force overcomes the pressure induced seating force thereof and said check valve means opens, causing the direction of piston motion to be reversed.
- 26. A double acting reversing oil motor comprising:
- (a) housing means forming an internal chamber;
- (b) a piston adapted for connection to a load being movably positioned within said internal chamber and partitioning said internal chamber into first and second motor chambers, said piston presenting a larger surface area to said first motor chamber than said second motor chamber;
- (c) fluid supply passage means interconnecting said first and second motor chamber means and being in communication with a source of pressurized operating fluid, said fluid supply passage means defining a flow port of sufficient dimension to permit the maximum rate of fluid flow necessary for operation of said reversing oil motor;
- (d) reversing valve means shifting the direction of flow within said fluid supply passage at each end of the stroke of said piston;
- (e) restricting valve means restricting flow of fluid within said fluid supply passage means when pressure between said reversing valve means and said second motor chamber is below a predetermined minimum, said restricting valve means being at a position permitting unobstructed flow of fluid through said flow port responsive to the presence of a predetermined minimum fluid pressure between said reversing valve means and said second motor chamber and being at positions restricting flow of fluid through said flow port responsive to fluid pressure between said reversing valve means and said second motor chamber that is below said predetermined minimum fluid pressure; and
- (f) spring means urging said restricting valve means toward said position restricting flow of fluid through said flow port, said spring means having a preload force that is overcome by said predetermined minimum fluid pressure.
- 27. A double acting reversing oil motor as recited in claim 26, wherein:
- said restricting valve means is sealed with respect to said fluid supply passage and is at atmospheric pressure on one side thereof and at fluid supply pressure on the opposite side thereof resulting in development of a pressure differential urging said restricting valve means against said preload force.
Parent Case Info
This is a continuation of Application Ser. No. 06/909,594 filed on Sept. 17, 1986 now abandoned. which Application Ser. No. 06/909,594 was a continuation-in-part of Application Ser. No. 06/776,562 of Philip L. Cowan, filed on Sept. 16, 1985 and entitled AUTOMATIC REVERSING VALVE.
US Referenced Citations (17)
Foreign Referenced Citations (2)
Number |
Date |
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2459210 |
Jun 1976 |
DEX |
50741 |
Mar 1910 |
CHX |
Continuations (1)
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Number |
Date |
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Parent |
909594 |
Sep 1986 |
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Continuation in Parts (1)
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776562 |
Sep 1985 |
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