Claims
- 1. A reciprocating pump and reversing mechanism therefor comprising in combination:
- a housing having a pair of laterally spaced chambers with diaphragm members therein dividing each of said chambers into a driving section and a discharge section;
- said diaphragm members being interconnected by a common shaft;
- a protrusion extending from said common shaft;
- manifold means in said housing for transmitting fluid to and from said driving sections and discharge sections of said chambers through fluid inlet and outlet ports therein;
- inlet and outlet check valves in selected ones of said ports for controlling the flow of liquid to be pumped to and from said discharge sections through said manifold means, said check valves being contained within cartridges, said cartridges having a universal shape which will fit into either said inlet or outlet ports of oriented consistent with a proper fluid flow direction, and having coded configurations on each said check valve cartridge which preclude the insertion thereof into said inlet or outlet port inconsistent with said proper predetermined fluid flow direction; and
- a reversing mechanism module contained within a common housing removably attached to said pump between said discharge chambers and adjacent said common shaft, said module including,
- control valve means for directing driving fluid alternately to a selected one of said driving sections defined by said diaphragms in said lateral chambers, a valve actuating member mounted adjacent to said shaft for sliding movement on bearing surfaces between first and second positions partially in response to engagement by said protrusion, said valve actuating member constraining said control valve means to alternately direct said driving fluid to the respective driving sections in said first and second positions of said actuating member, and snap-acting means for accelerating and biasing said valve actuating member against any tendency to stop between said first and second positions, said snap-acting means including a pair of opposed coil springs attached to the bottom of said actuator and disposed on opposite sides of an axis which is parallel to a longitudinal axis of said shaft, said coil springs exerting equal and opposite forces on said valve actuating member in directions transverse to said axis throughout the positions of movement on said surfaces.
- 2. The pump according to claim 1, wherein said coded configuration on each said cartridge includes a first configuration on a first end of said cartridge and a second configuration on a second end of said cartridge, said first configuration only fitting into an inlet port and said second configuration only fitting into an outlet port.
- 3. A reciprocating pump and reversing mechanism therefor comprising in combination:
- a housing having a pair of laterally spaced chambers with diaphragm members therein dividing each of said chambers into a driving section and a discharge section;
- said diaphragm members being interconnected by a common shaft;
- a protrusion extending from said common shaft;
- manifold means in said housing for transmitting fluid to and from said driving sections and discharge sections of said chambers through fluid inlet and outlet ports therein;
- inlet and outlet valves in selected ones of said ports for controlling the flow of liquid to be pumped to and from said discharge sections through said manifold means; and
- a reversing mechanism module contained within a common housing removably attached to said housing between said laterally spaced chambers and adjacent said common shaft, said module including,
- control valve means including a reciprocable spool valve element movable between two alternate positions to alternately direct driving fluid through said manifold means to said driving sections;
- a top housing portion containing said control valve means within a top section thereof, a peripheral skirt extending downwardly from said top section defining an open cavity, said skirt having opposed openings therein defining a guide slot;
- a yoke-shaped valve actuating member mounted for reciprocable movement within said guide slot, said yoke-shaped valve actuating member having a pair of spaced upstanding arms for alternately engaging and actuating opposite ends of said spool valve element of said control valve to reciprocate the same to said two alternate positions and a pair of spaced downwardly extending arms for alternately engaging said protrusion on the reciprocating shaft of said pump;
- snap-acting means for accelerating said valve actuating member and precluding the stopping of said spool valve element in intermediate positions between said two alternate positions, said snap-acting means including a pair of pivotally mounted pins disposed in a common plane adjacent said yoke-shaped valve actuating member, each of said pins having pivot ends disposed on a fixed axis perpendicular to the longitudinal axis of said guide slot and bearing ends nested within each other, said bearing ends being coupled to said yoke-shaped valve actuating member and movable therewith along the longitudinal axis of said guide slot, and coil spring means surrounding each of said pins exerting equal and opposite forces on said bearing ends; and
- a bottom housing portion for containing said pins and coil spring means therein, said bottom housing portion being removably attached to said top housing portion.
- 4. The pump and reversing mechanism according to claim 3, wherein said fixed pivot ends of said pins and at least a portion of said coil spring means are removably disposed within a retaining structure comprising:
- tubular sockets for receiving said fixed pivot ends and said coil spring means; and
- pivot pin means extending from said tubular sockets into mating fixed apertures to define fixed pivot points on said axis perpendicular to the direction of movement of said valve actuating member.
- 5. The pump according to claim 3, wherein said top and bottom housing portions telescope with respect to each other to form said common housing of said module and said valve actuating member is sandwiched between said housing portions.
- 6. An article for use with a double-acting reciprocating pump comprising:
- (1) a module housing including a top portion and a separate bottom portion connected thereto and including a pair of opposed sidewalls;
- (2) said module housing including a pair of opposed openings in said pair of opposed sidewalls thereof providing a guide slot through said module housing;
- (3) a yoke-shaped valve actuating member mounted for reciprocating movement within said guide slot back and forth between two end positions, said valve actuating member having a first pair of spaced-apart arms extending transversely from said member on one side of said member, said valve actuating member also having a second pair of spaced-apart arms extending transversely from said member on the opposite side of said member;
- (4) snap-acting means including compression spring means mounted in said module housing and pivotably connected to said valve actuating member for rapidly completing the movement of said member from one of its two end positions to the other after said member has already been moved part way to said other end position; and
- (5) control valve means for providing driving fluid to said double-acting reciprocating pump including a reciprocable spool valve element movable between two alternate positions to alternately direct driving fluid to driving sections of said double acting reciprocating pump, causing said pump to reciprocate, said spool valve element having a pair of opposite contact ends extending from said module housing for operative engagement by said first pair of spaced-apart arms on said yoke-shaped valve actuating member.
- 7. The article of claim 6, wherein said first and second pairs of spaced-apart arms extend outside of said module housing.
- 8. The article of claim 6, wherein said control valve means is disposed in said top portion of said module housing and above said yoke-shaped valve actuating member.
- 9. The article of claim 8, wherein said snap-acting means is disposed below said yoke-shaped valve actuating member.
- 10. In a pump having discharge chambers with inlet and outlet ports for the passage of fluid into and out of said chambers and removable check valves disposed in said ports to permit fluid flow in only one predetermined direction, the improvement comprising:
- a check valve cartridge with a universal shape which will fit into either said inlet or outlet port if oriented consistent with said one predetermined fluid flow direction; and
- coded configurations on said check valve cartridge which preclude the insertion thereof into said inlet or outlet port inconsistent with said one predetermined fluid flow direction.
- 11. The pump according to claim 10, wherein said inlet and outlet ports also include coded configurations that mate with the coded configurations on said check valve cartridges when said check valve cartridges are oriented consistent with the predetermined fluid flow direction.
- 12. The pump according to claim 11, wherein said coded configurations on said cartridges are protrusions and the coded configurations in said inlet and outlet ports are slots which mate with properly oriented protrusions.
- 13. The pump according to claim 10, wherein said coded configuration on said cartridge includes a first configuration on a first end of said cartridge and a second configuration on a second end of said cartridge, said first configuration only fitting into an inlet port and said second configuration only fitting into an outlet port.
- 14. The pump according to claim 13, wherein said inlet and outlet ports also include coded configurations that mate with the coded configuration on said check valve cartridges when said check valve cartridges are oriented consistent with the predetermined fluid flow direction.
- 15. The pump according to claim 14, wherein said first and second configurations on said cartridge are protrusions and the coded configurations in said inlet and outlet ports are slots which mate with properly oriented protrusions.
- 16. A reciprocating pump and reversing mechanism therefor comprising in combination:
- (a) a pump housing including a pair of laterally spaced-apart chambers each of which has a diaphragm member therein dividing each chamber into a driving section and a discharge section, each of said discharge sections having an inlet port and an outlet port and each of said driving sections having inlet-outlet port means;
- (b) said diaphragm members being interconnected by a shaft mounted in said housing for reciprocating movement, whereby said shaft moves with said diaphragm members such that as the driving section of one chamber expands, forcing its discharge section to contract, the driving section of the other chamber contracts while its discharge section expands;
- (c) a protrusion fixedly connected to said shaft and extending transversely therefrom;
- (d) said housing also including a fluid outlet manifold interconnecting said outlet ports of said discharge sections, a fluid inlet manifold interconnecting said inlet ports of said discharge sections, and a driving fluid manifold interconnecting said inlet-outlet port means of said driving sections;
- (e) inlet and outlet valves in said housing in fluid communication with said fluid inlet and outlet manifolds, respectively, for controlling the flow of fluid to be pumped to and from each of said discharge sections;
- (f) control valve means including a reciprocable spool valve element in fluid communication with said driving fluid manifold means and movable between two alternate positions to alternately direct driving fluid to said two driving sections while also alternately allowing driving fluid to flow from the other one of said two driving sections, said spool valve element having a pair of opposite contact ends;
- (g) a module housing attached to said pump housing and located in between said chambers and adjacent to said shaft, said module housing including a top portion and a separate bottom portion connected thereto and including a pair of opposed openings in a pair of opposed sidewalls thereof providing a guide slot through said module housing;
- (h) a yoke-shaped valve actuating member mounted for reciprocating movement within said guide slot between two valve-actuated end positions, said valve actuating member having a first pair of spaced-apart arms positioned one each adjacent respective ones of said opposite contact ends of said spool valve element for alternately snap contacting said opposite contact ends to alternately snap said spool valve element back and forth between its two positions, said valve actuating member also having a second pair of spaced-apart arms positioned one each on opposite sides of said protrusion for alternately being contacted by said protrusion as said shaft reciprocates for initiating each reciprocating stroke of said valve actuating member, the completion of each of said reciprocating strokes being carried out by the below-recited snap-acting means; and
- (i) snap-acting means including compression spring means mounted in said module housing and connected to said valve actuating member for completing the movement of said member from one of its two positions to the other initiated by said protrusion engaging one of said second pair of arms of said valve actuating member.
- 17. The pump and reversing mechanism according to claim 16, wherein said first and second pair of arms of said valve actuating member extend outside of said module housing.
- 18. The pump and reversing mechanism according to claim 16, wherein said protrusion is a separate element connected to said shaft at a point half-way between the shaft ends and said module housing is located half-way between said chambers and above said shaft.
- 19. The pump and reversing mechanism according to claim 16, wherein said module housing is removably connected to said pump housing.
- 20. The pump and reversing mechanism according to claim 16, wherein said top and bottom portions of said module housing are removably connected together.
- 21. The pump and reversing mechanism according to claim 16, wherein said inlet-outlet port means includes only a single port which operates as both an inlet port and an outlet port.
- 22. The pump and reversing mechanism according to claim 16, wherein each of said discharge sections includes a single inlet port and a single outlet port, and wherein said outlet port is located at an upper portion of said discharge section.
- 23. The pump and reversing mechanism according to claim 22, wherein said inlet and outlet valves are located in said inlet and outlet ports, respectively.
- 24. The Pump and reversing mechanism according to claim 16, wherein said inlet and outlet valves are located in said inlet and outlet ports, respectively, wherein each of said inlet and outlet valves are identical and each includes a check valve mounted within a cartridge, each of said cartridges including a coded configuration of first elements on its outer surface, each of said inlet and outlet ports including a coded configuration of second elements that mate with said first elements, said coded configuration of first and second elements precluding the installation of a valve into an inlet or outlet port inconsistent with the proper predetermined fluid flow direction, whereby any one of said valves can be installed in any one of an inlet or outlet port by orienting it consistent with the proper predetermined fluid flow direction.
- 25. The pump and reversing mechanism according to claim 24, wherein said coded configuration includes a first configuration and a second configuration, wherein both said first and second configurations are on each cartridge, wherein said pump housing includes a central body portion and a pair of end caps and wherein said inlet and outlet ports are formed partly in said body portion and partly in said end caps, and wherein one of said first and second configurations of each of said inlet and outlet ports is in said body portion and the other of said first and second configurations is in one of said end caps.
- 26. The pump and reversing mechanism according to claim 16, wherein said fluid outlet manifold has a single manifold outlet, said fluid inlet manifold has a single manifold inlet, said module housing has a single driving fluid inlet, and wherein all three of said manifold outlet, manifold inlet, and driving fluid inlet are located on the same side of said pump housing and are all located in a common plane perpendicular to said shaft and half-way between said pair of chambers.
- 27. The pump and reversing mechanism according to claim 26, wherein said inlet and outlet valves are located in said inlet and outlet ports, respectively, wherein each of said inlet and outlet valves are identical and each includes a check valve mounted within a cartridge, each of said cartridges including a coded configuration of first elements on its outer surface, each of said inlet and outlet ports including a coded configuration of second elements that mate with said first elements, said coded configuration of first and second elements precluding the installation of a valve into an inlet or outlet port inconsistent with the proper predetermined fluid flow direction, whereby any one of said valves can be installed in any one of an inlet or outlet port by orienting it consistent with the proper predetermined fluid flow direction.
- 28. The pump and reversing mechanism according to claim 27, wherein said coded configuration includes a first configuration and a second configuration, wherein both said first and second configurations are on each cartridge, wherein said pump housing includes a central body portion and a pair of end caps and wherein said inlet and outlet ports are formed partly in said body portion and partly in said end caps, and wherein one of said first and second configurations of each of said inlet and outlet ports is in said body portion and the other of said first and second configurations is in one of said end caps.
- 29. The pump and reversing mechanism according to claim 28, wherein said bottom portion of said module housing includes an upstanding wall below each of said opposed openings, the top edge of which wall forms a bottom edge of each of said opposed openings, whereby a bottom surface of said valve actuating member rides on said top edge.
- 30. The pump and reversing mechanism according to claim 16, wherein said snap-acting means includes a pair of elongated pins disposed in a common plane and being located one each on opposite sides of said valve actuating member and each pin having a proximal end pivotally coupled to said member and a distal end pivotally coupled about a respective axis fixed relative to said module housing and perpendicular to said common plane, said pins being pivotally movable as said valve actuating member reciprocatingly moves in said guide slot of said module housing, and coil compression spring means surrounding each of said pins and exerting forces on said valve actuating member.
- 31. The pump and reversing mechanism according to claim 30, wherein said control valve means is also located inside of said module housing, whereby said module housing is a reversing mechanism module housing.
- 32. The pump and reversing mechanism according to claim 31, wherein said contact ends of said spool valve element extend outwardly beyond said module housing and wherein said first and second pair of arms of said valve actuating member also extend outside of said module housing.
- 33. The pump and reversing mechanism according to claim 31, wherein said protrusion is a separate element connected to said shaft at a point half-way between the shaft ends and said module housing is located half-way between said chambers and above said shaft.
- 34. The pump and reversing mechanism according to claim 31, wherein said module housing is removably connected to said pump housing.
- 35. The pump and reversing mechanism according to claim 31, wherein said inlet-outlet port means includes only a single port which operates as both an inlet port and an outlet port.
- 36. The pump and reversing mechanism according to claim 31, wherein said module housing is mounted above said shaft, said control valve means is located in said module housing above said valve actuating member, said first pair of arms extends upwardly, said second pair of arms extends downwardly, and said pair of pins is located below said valve actuating member.
- 37. The article of claim 16, wherein said compression spring means comprise torsion springs.
- 38. The pump and reversing mechanism according to claim 31, wherein at least one of the pair of distal or proximal ends of said pair of pins is slidably coupled to the axis about which said at least one pair of ends is pivotally coupled.
- 39. The pump and reversing mechanism according to claim 38, wherein the pair of distal ends of said pair of pins is slidably coupled about said axis fixed relative to said housing.
- 40. The pump and reversing mechanism according to claim 31, wherein said module housing includes a top portion and a bottom portion removably attached together.
- 41. The pump and reversing mechanism according to claim 40, wherein said module housing is removably connected to said pump housing.
- 42. The pump and reversing mechanism according to claim 31, wherein each of said discharge sections includes a single inlet port and a single outlet port, and wherein said outlet port is located at an upper portion of said discharge section.
- 43. The pump and reversing mechanism according to claim 42, wherein said inlet and outlet valves are located in said inlet and outlet ports, respectively.
- 44. The pump and reversing mechanism according to claim 31, wherein said proximal ends of said pins are pivotally coupled to said valve actuating member on a common axis.
- 45. The pump and reversing mechanism according to claim 44, wherein said proximal ends include bearing ends nested within and in bearing contact with each other.
- 46. The pump and reversing mechanism according to claim 45, wherein the pair of distal ends of said pair of pins is slidably coupled about said axis fixed relative to said housing.
- 47. The pump and reversing mechanism according to claim 31, wherein said fluid outlet manifold has a single manifold outlet, said fluid inlet manifold has a single manifold inlet, said module housing has a single driving fluid inlet, and wherein all three of said manifold outlet, manifold inlet, and driving fluid inlet are located on the same side of said pump housing and are all located in a common plane perpendicular to said shaft and half-way between said pair of chambers.
- 48. The pump and reversing mechanism according to claim 47, wherein said fluid outlet manifold is located at the top of said pump housing and said fluid inlet manifold is located at the bottom of said pump housing.
- 49. The pump and reversing mechanism according to claim 31, wherein said inlet and outlet valves are located in said inlet and outlet ports, respectively, wherein each of said inlet and outlet valves are identical and each includes a check valve mounted within a cartridge, each of said cartridges including a coded configuration of first elements on its outer surface, each of said inlet and outlet ports including a coded configuration of second elements that mate with said first elements, said coded configuration of first and second elements precluding the installation of a valve into an inlet or outlet port inconsistent with the proper predetermined fluid flow direction, whereby any one of said valves can be installed in any one of an inlet or outlet port by orienting it consistent with the proper predetermined fluid flow direction.
- 50. The pump and reversing mechanism according to claim 49, wherein said first elements are protrusions and said second elements are slots.
- 51. The pump and reversing mechanism according to claim 49, wherein said coded configuration includes a first configuration and a second configuration, wherein both said first and second configurations are on each cartridge, wherein said pump housing includes a central body portion and a pair of end caps and wherein said inlet and outlet ports are formed partly in said body portion and partly in said end caps, and wherein one of said first and second configurations of each of said inlet and outlet ports is in said body portion and the other of said first and second configurations is in one of said end caps.
- 52. The pump and reversing mechanism according to claim 31, wherein said contact ends of said spool valve element extend outwardly beyond said module housing, wherein said first and second pair of arms of said valve actuating member also extend outside of said module housing and wherein at least one of the pairs of distal or proximal ends of said pair of pins is slidably coupled to the axis about which said at least one pair of ends is pivotally coupled.
- 53. The pump and reversing mechanism according to claim 52, wherein each of said discharge sections includes a single inlet port and a single outlet port, and wherein said outlet port is located at an upper portion of said discharge section.
- 54. The pump and reversing mechanism according to claim 53, wherein said inlet-outlet port means includes only a single port which operates as both an inlet port and an outlet port.
- 55. The pump and reversing mechanism according to claim 54, wherein said inlet and outlet valves are located in said inlet and outlet ports, respectively.
- 56. The pump and reversing mechanism according to claim 55, wherein said module housing is removably connected to said pump housing.
- 57. The pump and reversing mechanism according to claim 56, wherein said protrusion is a separate element connected to said shaft at a point half-way between the shaft ends and said module housing is located half-way between said chambers and above said shaft.
- 58. The pump and reversing mechanism according to claim 57, wherein the pair of distal ends of said pair of pins is slidably coupled about said axis fixed relative to said housing.
- 59. The pump and reversing mechanism according to claim 58, wherein said proximal ends of said pins are pivotally coupled to said valve actuating member on a common axis.
- 60. The pump and reversing mechanism according to claim 59, wherein said module housing is mounted above said shaft, said control valve means is located in said module housing above said valve actuating member, said first pair of arms extends upwardly, said second pair of arms extends downwardly, and said pair of pins is located below said valve actuating member.
- 61. The pump and reversing mechanism according to claim 60, wherein said module housing includes a top portion and a bottom portion removably attached together.
- 62. The pump and reversing mechanism according to claim 61, wherein said fluid outlet manifold has a single manifold outlet, said fluid inlet manifold has a single manifold inlet, said module housing has a single driving fluid inlet, and wherein all three of said manifold outlet, manifold inlet, and driving fluid inlet are located on the same side of said pump housing and are all located in a common plane perpendicular to said shaft and half-way between said pair of chambers.
- 63. The pump and reversing mechanism according to claim 62, wherein said fluid outlet manifold is located at the top of said pump housing and said fluid inlet manifold is located at the bottom of said pump housing.
Parent Case Info
This application is a continuation-in-part of prior application Ser. No. 077,544, filed Sept. 21, 1979, now abandoned.
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Continuation in Parts (1)
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77544 |
Sep 1979 |
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