SINGLE PISTON FOUNDATION BAG-IN-BOX (BIB) PUMP
20220128048 · 2022-04-28
Inventors
- Christopher H. Verdugo (Yorba Linda, CA, US)
- Manuel Villagomez (Corona, CA, US)
- Humberto V. Meza (Trabuco Canyon, CA, US)
Cpc classification
F04B43/073
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B53/109
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B43/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B9/127
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B9/123
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B53/1092
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B9/135
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B45/0536
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B45/053
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A pump includes a liquid housing having a liquid chamber with a piston/diaphragm assembly arranged therein that responds to a suction stroke and draws liquid into the liquid chamber, and responds to a pressure stroke and provides liquid from the liquid chamber; and a gas housing having a slide valve assembly separating first and second gas chambers. The slide valve assembly responds to a suction-to-pressure-force at the suction stroke conclusion, changes from a suction-to-pressure stroke state, provides gas from the first to second gas chamber through the slide valve assembly, and provides the pressure stroke so liquid passes from the liquid chamber; and responds to a pressure-to-suction-force at the pressure stroke conclusion, changes from the pressure-to-suction stroke state, provides gas from the second chamber through the slide valve assembly, and provides the suction stroke so liquid is drawn into the liquid chamber.
Claims
1-14. (canceled)
15. A pump (10) comprising: a gas housing (20) having a first gas chamber (21a), a second gas chamber (21b), a gas exhaust fitting (60) configured to provide inlet gas to the first gas chamber (21a), and a gas inlet fitting (62) configured to provide outlet gas from the second gas chamber (21b), a liquid housing (30) having a liquid chamber (31a), a liquid outlet fitting (64) configured to provide liquid from the liquid chamber (31a), and a liquid suction fitting (66) configured to provide the liquid to the liquid chamber (31a), having a single piston/diaphragm assembly (32) with a spring (36) and being arranged between the second gas chamber (21b) and the liquid chamber (31a), the single piston/diaphragm assembly (32) drawing the liquid from the liquid inlet fitting (66) into the liquid chamber (31a) during a suction stroke and providing the liquid from the liquid chamber (31a) to the outlet fitting (64) during a pressure stroke; the spring (36) being configured in the liquid chamber (31a) to store energy during the pressure stroke and provides the suction stroke; and a slide valve assembly (22) being arranged in the first gas chamber 21a and being movable between a pressure stroke state and a suction stroke state for alternately providing pressurized gas to the second gas chamber (21b) so that the liquid passes from the liquid chamber (31a) to the liquid outlet fitting (64), and providing gas from the second gas chamber (21b) to atmosphere, so that the spring (36) provides the suction stroke and liquid is drawn from the liquid inlet fitting (66) into the liquid chamber (31a), characterized in that the the slide valve assembly (22) comprises a block or housing assembly (22a) and an actuator assembly (22b); the block or housing assembly (22a) comprises a slide valve housing (22a1) configured with a cavity; the actuator assembly (22b) comprises a slide block (22b1) configured to slide in the cavity of the slide valve housing (22a1); the actuator assembly (22b) having a slide spring (22b3) arranged between a lower retainer (22b2) and an upper retainer (22b4) forming an actuator combination under compression, and a yoke (22b5) configured with an opening to contain the actuator combination under compression; and a piston shaft/actuator slide assembly (26) coupling the yoke (22b5) and the single piston/diaphragm assembly (32) causing the slide valve assembly (22) to change between the pressure stroke state and the suction stroke state.
16. A pump (10) according to claim 15, wherein the actuator assembly (22b) is configured to slide in relation to the block or housing assembly (22a) in response to the suction-to-pressure force and the pressure-to-suction force.
17. A pump (10) according to claim 15, wherein the first gas chamber (21a) is configured to receive the gas via the gas inlet fitting (62) in response to the suction-to-pressure force at the conclusion of the suction stroke.
18. A pump (10) according to claim 15, wherein the slide valve assembly (22) is configured to provide the gas via the gas exhaust fitting (60) to atmosphere in response to the pressure-suction force at the conclusion of the pressure stroke.
19. A pump (10) according to claim 15, wherein, during the pressure stroke, the slide valve assembly (22) is positioned so that gas is routed from the first gas chamber (21a) thru the slide valve assembly (22) to the second gas chamber (21b).
20. A pump (10) according to claim 15, wherein, during the suction stroke, the slide valve assembly (22) is positioned so that gas is routed from the second gas chamber (21b) thru the slide valve assembly (22) to the gas exhaust fitting (60).
21. A pump (10) according to claim 15, wherein the slide valve assembly (22) comprises at least one component (22b) made of ceramic.
22. A pump (10) according to claim 21, wherein the slide block (22b1) is made of ceramic.
23. A pump (10) according to claim 16, wherein the single piston/diaphragm assembly (32) comprises a piston (32a) and a diaphragm (32b), the piston (32a) being coupled to the slide valve assembly (22) via a piston shaft/actuator slide assembly (26), and the diaphragm (32b) being coupled between the gas housing (20) and the liquid housing (30).
24. A pump (10) comprising: a gas housing (20) having a first gas chamber (21a), a second gas chamber (21b), a gas exhaust fitting (60) configured to provide inlet gas to the first gas chamber (21a), and a gas inlet fitting (62) configured to provide outlet gas from the second gas chamber (21b); a liquid housing (30) having a liquid chamber (31a), a liquid outlet fitting (64) configured to provide liquid from the liquid chamber (31a), and a liquid suction fitting (66) configured to provide the liquid to the liquid chamber (31a), having a single piston/diaphragm assembly (32) with a spring (36) and being arranged between the second gas chamber (21b) and the liquid chamber (31a), the single piston/diaphragm assembly (32) drawing the liquid from the liquid inlet fitting (66) into the liquid chamber (31a) during a suction stroke and providing the liquid from the liquid chamber (31a) to the outlet fitting (64) during a pressure stroke; the spring (36) being configured in the liquid chamber (31a) to store energy during the pressure stroke and provides the suction stroke; and a slide valve assembly (22) being arranged in the first gas chamber 21a and being movable between a pressure stroke state and a suction stroke state for alternately providing pressurized gas to the second gas chamber (21b) so that the liquid passes from the liquid chamber (31a) to the liquid outlet fitting (64), and providing gas from the second gas chamber (21b) to atmosphere, so that the spring (36) provides the suction stroke and liquid is drawn from the liquid inlet fitting (66) into the liquid chamber (31a), characterized in that the the slide valve assembly (22) comprises a block or housing assembly (22a) and an actuator assembly (22b); the block or housing assembly (22a) comprises a slide valve housing (22a1) configured with a cavity; the actuator assembly (22b) comprises a slide block (22b1) configured to slide in the cavity of the slide valve housing (22a1); the actuator assembly (22b) having a slide spring (22b3) arranged between a lower retainer (22b2) and an upper retainer (22b4) forming an actuator combination under compression, and a yoke (22b5) configured with an opening to contain the actuator combination under compression; a piston shaft/actuator slide assembly (26) coupling the yoke (22b5) and the single piston/diaphragm assembly (32) causing the slide valve assembly (22) to change between the pressure stroke state and the suction stroke state; and the single piston/diaphragm assembly (32) comprises a piston (32a) and a diaphragm (32b), the piston (32a) being coupled to the slide valve assembly (22) via a piston shaft/actuator slide assembly (26), and the diaphragm (32b) being coupled between the gas housing (20) and the liquid housing (30).
25. A pump (10) according to claim 24, wherein the actuator assembly (22b) is configured to slide in relation to the block or housing assembly (22a) in response to the suction-to-pressure force and the pressure-to-suction force.
26. A pump (10) according to claim 24, wherein the first gas chamber (21a) is configured to receive the gas via the gas inlet fitting (62) in response to the suction-to-pressure force at the conclusion of the suction stroke.
27. A pump (10) according to claim 24, wherein the slide valve assembly (22) is configured to provide the gas via the gas exhaust fitting (60) to atmosphere in response to the pressure-suction force at the conclusion of the pressure stroke.
28. A pump (10) according to claim 24, wherein, during the pressure stroke, the slide valve assembly (22) is positioned so that gas is routed from the first gas chamber (21a) thru the slide valve assembly (22) to the second gas chamber (21b).
29. A pump (10) according to claim 24, wherein, during the suction stroke, the slide valve assembly (22) is positioned so that gas is routed from the second gas chamber (21b) thru the slide valve assembly (22) to the gas exhaust fitting (60).
30. A pump (10) according to claim 24, wherein the slide valve assembly (22) comprises at least one component (22b) made of ceramic.
31. A pump (10) according to claim 30, wherein the slide block (22b1) is made of ceramic.
Description
BRIEF DESCRIPTION OF THE DRAWING
[0023] The drawing includes
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[0032] In the drawing, the Figures have reference numerals and lead lines associated with the various elements shown therein. For the sake of reducing clutter in the drawing, and also improving readability when the specification is read in conjunction with the drawing, every Figure does not include every reference numeral and lead line associated with every element shown therein. Moreover, as a person skilled in the art would appreciate, some elements that do not form part of the underlying point of novelty of the present invention are not provided with a reference numeral and lead line.
DETAILED DESCRIPTION OF BEST MODE OF THE INVENTION
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[0034]
[0035]
[0036] By way of example, inside the gas housing 20, the following components may be arranged: a slide valve assembly 22 configured therein, a gas housing cover 24, and a piston shaft/actuator slide assembly 26. The slide valve assembly 22 may be configured with a block or housing assembly 22a and an actuator assembly 22b. The block or housing assembly 22a may include a slide valve housing 22a1, a block plate 22a2 and a gasket block 22a3, as labeled in
[0037] As labeled in
[0038] By way of example, inside the liquid housing 30, the following components may be arranged: a piston/diaphragm assembly 32, a piston shaft 34, a spring 36 and check valves 38a, 38b. The piston/diaphragm assembly 32 may include a piston 32a and a diaphragm 32b, as labeled in
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[0043] By way of example,
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[0054] The Actuator Assembly 22b
[0055] In the actuator assembly 22b, the slide spring 22b3 is configured under compression between the lower and upper retainers 22b2 and 22b4, and in relation to the sliding block 22a1 and the yoke 22b5, e.g., when in either the position in the pressure stroke (
[0056] A Ceramic Slide Type Gas Valve 22b
[0057] By way of example, the slide valve assembly 22 may include one or more components made of ceramic. For example, the slide block or gas valve 22b1 may include, or take the form of, a ceramic slide type gas valve. As a person skilled in the art would appreciate, a ceramic may take the form of a product or an article of manufacture made from a nonmetallic material by firing at a high temperature, such as porcelain. In particular, porcelain may be made from, or consistent of, kaolin, quartz and/or feldspar that is fired at high temperatures. The scope of the invention is not intended to be limited to any particular type or kind of ceramic or ceramic material that is now known or later developed in the art.
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[0060] Applications
[0061] By way of example, possible applications may include: BIB pumping, transfer pumping, or beverage dosing.
[0062] The present invention may also be used in, or form part of, or used in conjunction with, other fluid handling applications. The scope of the invention is also not intended to be limited to being implemented in any particular type or kind of pump either now known or later developed in the future, and may include other diaphragm pumps, etc.
[0063] The Scope of the Invention
[0064] While the invention has been described with reference to an exemplary embodiment, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the invention. In addition, may modifications may be made to adapt a particular situation or material to the teachings of the invention without departing from the essential scope thereof. Therefore, it is intended that the invention not be limited to the particular embodiment(s) disclosed herein as the best mode contemplated for carrying out this invention.