Multi-chamber wobble plate pump with asymmetric inlet valve
11619219 ยท 2023-04-04
Assignee
Inventors
Cpc classification
F04B43/026
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B43/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B43/0054
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B1/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04B43/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B43/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B43/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A multi-chamber wobble plate pump having a housing with an inlet port, an outlet port and a plurality of pump chambers. A wobble plate is coupled to a diaphragm and a plurality of pistons. Rotation of the wobble plate moves the pistons within the pump chambers to draw in and force fluid out of the chambers. The pump includes a plurality of inlet valves each located within one of the pump chambers to control fluid flow from the inlet port to the pump chambers. Each inlet valve has an asymmetric cross-section, a thin section and a stem along a longitudinal axis. The thin section of the valve has less mechanical strength than the remaining portion of the valve. The valve is configured to open first at the thin section from reduced pressure during outward movement of the piston allowing air to be removed from the chambers.
Claims
1. A multi-chamber wobble plate pump, comprising: a housing that has an inlet port, an outlet port and a plurality of pump chambers; a plurality of inlet valves each located within one of said pump chambers to control fluid flow from said inlet port to said pump chambers, each inlet valve having an asymmetric cross-section with a thin section, each inlet valve including a stem with a longitudinal axis, said asymmetric cross-section being in a plane perpendicular to said longitudinal axis, said thin section having a mechanical strength that is less than a remaining portion of each inlet valve; a plurality of outlet valves that control fluid flow from said pump chambers to said outlet port; a plurality of pistons that move within said pump chambers; a diaphragm attached to said plurality of pistons; and, a wobble plate coupled to said diaphragm to move said pistons within said pump chambers to cause fluid flow into and out of said pump chambers.
2. The multi-chamber wobble plate pump of claim 1, wherein said inlet and outlet valves each have a peripheral seal bead.
3. The multi-chamber wobble plate pump of claim 1, wherein said diaphragm includes a thin cross-sectional area that creates a hinge.
4. The multi-chamber wobble plate pump of claim 1, further comprising a pulsation damper located in-line with an outward flow of fluid and essentially at a right angle to said outlet port.
5. The multi-chamber wobble plate pump of claim 4, wherein said pulsation damper is integrated into said housing.
6. The multi-chamber wobble plate pump of claim 1, further comprising a relief valve integrated into said housing.
7. The multi-chamber wobble plate pump of claim 1, further comprising a flexible liner located with said housing in-line with an outward flow of fluid to absorb pressure surges within the fluid.
8. The multi-chamber wobble plate pump of claim 1, further comprising an elastomeric seal sleeve located within said housing adjacent to said wobble plate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(9) Disclosed is a multi-chamber wobble plate pump that includes a housing with an inlet port, an outlet port and a plurality of pump chambers. The pump further includes a plurality of inlet valves each located within one of the pump chambers to control fluid flow from the inlet port to the pump chambers. Each inlet valve may have an asymmetric cross-section with a thin section and/or a peripheral seal bead. The thin section is located away from an outlet port and opens before the remaining portion of the inlet valve opens to assist in the prevention of air entrapment in the pump chamber. The seal beads enhance the sealing action of the valves. The pump also includes a plurality of outlet valves that control fluid flow from the pump chambers to the outlet port and may each also have a peripheral seal bead. A wobble plate is coupled to a diaphragm and a plurality of pistons. Rotation of the wobble plate moves the pistons within the pump chambers to draw in and force fluid out of the chambers. The diaphragm may have a thin cross-sectional area that creates a hinge. The hinge increases the volume displacement within the pump chambers. The pump may further have a pulsation damper and a flexible liner located in-line with an outward flow of fluid and which absorb pressure transients and reduce noise. The pulsation dampener may be integrated into the relief valve. An elastomeric sleeve may be located adjacent to the wobble plate to provide both a seal and a noise absorber.
(10) Referring to the drawings by reference numbers,
(11) Referring to
(12) As shown in
(13) As shown in
(14) Referring again to
(15)
(16) The pump 10 may have an elastomeric sleeve 66 adjacent to the wobble plate 44. The elastomeric sleeve 66 provides a seal to any fluid that leaks through the diaphragm 42. Thus if the diaphragm is to leak the leaked fluid is contained within the pump 10. The elastomeric nature of the sleeve 66 also absorbs energy and reduces the noise of the pump 10. The pump 10 may also have a relief valve 68 that is integrated into the pump housing 14. The relief valve 68 opens when the pump pressure exceeds a threshold value.
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(18) Referring to
(19) While certain exemplary embodiments have been described and shown in the accompanying drawings, it is to be understood that such embodiments are merely illustrative of and not restrictive on the broad invention, and that this invention not be limited to the specific constructions and arrangements shown and described, since various other modifications may occur to those ordinarily skilled in the art.