Reciprocating Pump Having a Combination Check Valve and Relief Valve
20180223817 ยท 2018-08-09
Assignee
Inventors
Cpc classification
F04B45/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B19/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B43/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B39/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B53/1085
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04B7/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B19/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B53/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B45/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B43/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A reciprocating pump having a combination check valve and relief valve is disclosed. The pump includes a pump body having an inlet, an outlet and a pumping chamber. A biasing element provides a force that biases a movable seat toward sealing engagement between a first region of the movable seat and a fixed seat at the inlet. A movable checking element is movable away from a second region of the movable seat when fluid flows in one direction through a passageway in the movable seat. The movable seat also acts as a relief valve wherein the first region of the movable seat disengages the fixed seat if the movable checking element is being forced into engagement with the second region of the movable seat by a force that exceeds the force of the biasing element against a third region of the movable seat.
Claims
1. A reciprocating pump having a combination check valve and relief valve, comprising: a pump body further comprising an inlet, an outlet and a pumping chamber in fluid communication between the inlet and the outlet; a fixed seat at the inlet; a biasing element seat at the inlet; a biasing element that engages the biasing element seat; a movable checking element; a movable seat having a passageway therethrough and a first region that engages the fixed seat, a second region that engages the movable checking element, and a third region that engages the biasing element; wherein the biasing element provides a force that biases the movable seat toward sealing engagement between the first region of the movable seat and the fixed seat, the movable checking element is movable away from the second region of the movable seat when fluid flows in one direction through the passageway in the movable seat, and the movable seat acts as a relief valve wherein the first region of the movable seat disengages the fixed seat if the movable checking element is being forced into engagement with the second region of the movable seat by a force that exceeds the force of the biasing element against the third region of the movable seat.
2. The reciprocating pump of claim 1, wherein the movable seat has first and second faces.
3. The reciprocating pump of claim 2, wherein the first and second faces are on opposed sides of the movable seat.
4. The reciprocating pump of claim 2, wherein the first and second regions of the movable seat are located on the first face of the movable seat, and the third region of the movable seat is located on the second face of the movable seat.
5. The reciprocating pump of claim 2, wherein the first, second and third regions of the movable seat are located on the first face of the movable seat.
6. The reciprocating pump of claim 1, wherein the biasing element is a compression spring, a tension spring or a torsion spring.
7. The reciprocating pump of claim 1, wherein the biasing element force is adjustable.
8. The reciprocating pump of claim 7, wherein the biasing element force is adjusted by displacement of the biasing element seat.
9. The reciprocating pump of claim 8, wherein the biasing element seat is displaceable by a screw or spacer.
10. The reciprocating pump of claim 1, wherein the movable checking element is a ball, a flapper or a poppet.
11. The reciprocating pump of claim 1, wherein the movable checking element is movable axially or rotationally.
12. The reciprocating pump of claim 1, wherein the movable seat is movable axially or rotationally.
13. The reciprocating pump of claim 1, wherein the movable checking element is forced into engagement with the second region of the movable seat by a second biasing element.
14. The reciprocating pump of claim 13, wherein the second biasing element has a lower spring force that the first biasing element.
15. The reciprocating pump of claim 13, wherein the second biasing element engages a second biasing element seat in the inlet.
16. The reciprocating pump of claim 1, wherein the reciprocating pump further comprises a piston in communication with the pumping chamber.
17. The reciprocating pump of claim 1, wherein the reciprocating pump further comprises a diaphragm in communication with the pumping chamber.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] In describing the preferred example embodiments, reference is made to the accompanying drawing figures wherein like parts have like reference numerals, and wherein:
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
[0018]
[0019]
[0020] It should be understood that the drawings are not to scale. While some mechanical details of the example pumps, including details of fastening means and other plan and section views of the particular components, may not have been shown, such details are considered to be within the comprehension of those skilled in the art in light of the present disclosure. It also should be understood that the present disclosure and claims are not limited to the preferred embodiments illustrated.
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
[0021] Referring generally to
[0022]
[0023] At the inlet 6, the pump 1 has a combination check valve and relief valve 10, which includes a fixed seat 11 at the inlet 6, a biasing element seat 12 at the inlet 6, a biasing element 13 in the form of a compression spring that engages the biasing element seat 12, a movable checking element 14, and a movable seat 15 having a passageway 16 therethrough. The movable seat 15 has a first region 15a that engages the fixed seat 11, a second region 15b that engages the movable checking element 14, and a third region 15c that engages the biasing element 13.
[0024] In this first example embodiment, the biasing element 13 is pre-compressed against the biasing element seat 12 during assembly of the central portion 3 and upstream portion 4 of the pump body 2. This forces the first region 15a on a first face 15d of the movable seat 15 into sealing engagement against the fixed seat 11 in the inlet 6. The second region 15b is effectively on the first face 15d of the movable seat 15 and engages the movable checking element 14, and the third region 15c is on an opposed second face 15e of movable seat 15 that engages the biasing element 13.
[0025] The pre-compression in
[0026] It will be appreciated that it is contemplated that pumps could have multiple inlets and/or outlets and the one or more inlets could have multiple combination check valve and relief valves. In addition, a combination check valve and relief valve could include multiple components, as desired, such as with respect to fixed seats, biasing element seats, biasing elements, checking elements, and movable seats.
[0027] In
[0028] In
[0029] Turning to
[0030] As shown in
[0031] At the inlet 106, the pump 101 has a combination check valve and relief valve 110, which includes a fixed seat 111 at the inlet 106, a biasing element seat 112 at the inlet 106, a biasing element 113 in the form of a tension spring that engages the biasing element seat 112 at a shaft 118, a movable checking element 114, and a movable seat 115 having a passageway 116 therethrough. The movable seat 115 has a first region 115a on a first face 115d of the movable seat 115 that engages the fixed seat 111, a second region 115b is effectively on the first face 115d of the movable seat 115 and engages the movable checking element 114, and a third region 115c is on the first face 115d of the movable seat 115 that engages the biasing element 113, with no engagement of an opposed second face 115e of the movable seat 115.
[0032] In
[0033] As shown in
[0034] At the inlet 106, the pump 101 has a combination check valve and relief valve 110, which includes a fixed seat 111 at the inlet 106, a biasing element seat 112 at the inlet 106, a first biasing element 113 in the form of a compression spring that engages the biasing element seat 112, a movable checking element 114 in the form of a poppet, and a movable seat 115 having a passageway 116 therethrough. The movable seat 115 has a first region 115a on a the first face 115d of the movable seat 115 that engages the fixed seat 111, a second region 115b is effectively on the first face 115d of the movable seat 115 and engages the movable checking element 114, and a third region 115c is on a second face 115e of the movable seat that engages the first biasing element 113.
[0035] In
[0036] Turning to
[0037] At the inlet 206, the pump 201 has a combination check valve and relief valve 210, which includes a fixed seat 211 at the inlet 206, a biasing element seat 212 at the inlet 206, a biasing element 213 in the form of a torsion spring that acts rotationally and engages the biasing element seat 212, a movable checking element 214 in the form of a flapper, and a movable seat 215 in the form of a flapper that is movable rotationally and has a passageway 216 therethrough. The movable seat 215 has a first region 215a that engages the fixed seat 211, a second region 215b that engages the movable checking element 214, and a third region 215c that engages the biasing element 213.
[0038] In this third example embodiment, the biasing element 213 is pre-compressed against the biasing element seat 212 during assembly within the upstream portion 204 of the pump body 202. This forces the first region 215a on a first face 215d of the movable seat 215 into sealing engagement against the fixed seat 211 in the inlet 206. The second region 215b on the first face 215d of the movable seat 215 engages the movable checking element 214, and the third region 215c on an opposed second face 215e of movable seat 215 engages the biasing element 213.
[0039] The pre-compression in
[0040] Once again, regardless of the particular example embodiment, it will be appreciated that pumps could have multiple inlets and/or outlets and the one or more inlets could have multiple combination check valve and relief valves, and that a combination check valve and relief valve could include multiple components, as desired, such as with respect to fixed seats, biasing element seats, biasing elements, checking elements, and movable seats.
[0041] From the above disclosure, it will be apparent that pumps constructed in accordance with this disclosure may include a number of structural aspects that provide advantages over conventional constructions, depending upon the specific design chosen.
[0042] It will be appreciated that reciprocating pumps having a combination check valve and relief valve may be embodied in various configurations with respect to the type of pump, as well as various configurations of a combination check valve and relief valve. Any variety of suitable materials of construction, configurations, shapes and sizes for the components and methods of connecting the components may be utilized to meet the particular needs and requirements of an end user. It will be apparent to those skilled in the art that various modifications can be made in the design and construction of such reciprocating pumps having a combination check valve and relief valve without departing from the scope or spirit of the claimed subject matter, and that the claims are not limited to the preferred embodiment illustrated herein.