Adapter for a valve system
11118630 · 2021-09-14
Assignee
Inventors
- Rodney A. Lawrence (Frankfort, IN, US)
- Brandyn A. Stack (Lafayette, IN, US)
- William Jenkins (Flora, IN, US)
Cpc classification
F02M26/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D1/101
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K1/221
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16K31/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16D1/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A valve system may include a valve having a housing with a bore and a valve member positioned within the bore. The valve member may include a valve shaft with a recess. The valve system may also include an actuator having an actuator shaft with an end portion. An adapter may couple the valve shaft and the actuator shaft. The adapter may include a body having a shape corresponding to a shape of the recess of the valve shaft for fitting the adapter within the recess and an aperture extending into the body. The aperture may have a shape corresponding to a shape of the end portion of the actuator shaft for press fitting the adapter onto the actuator shaft. The adapter may fit within the recess and press fit coupled to the actuator shaft.
Claims
1. A valve system for an internal combustion engine, comprising: a valve including: a housing with a bore through which fluid may flow; a valve member positioned within the bore for selectively restricting flow through the bore, the valve member including a valve shaft rotatably mounted in a shaft opening of the housing, wherein the valve shaft includes a recess having a generally hexagonal shape; an actuator mounted on the housing of the valve, the actuator including an actuator shaft with an end portion having a generally double-d shape, wherein the generally double-d shape includes a perimeter formed from diametrically opposed arc segments of a circle, the circle being truncated on opposite sides thereof by a pair of chords equidistant from and parallel to a diameter which perpendicularly bisects the arc segments; and an adapter coupling the valve shaft and the actuator shaft, the adapter including: a body having a generally hexagonal shape corresponding to the generally hexagonal shape of the recess of the valve shaft for fitting the adapter within the recess; and an aperture extending into the body, the aperture having a generally double-d shape corresponding to the generally double-d shape of the end portion of the actuator shaft for press fitting the adapter onto the actuator shaft, wherein the adapter is fit within the recess and press fit coupled to the actuator shaft so that the actuator can selectively move the valve member between an open position and a closed position.
2. The valve system of claim 1, wherein the adapter includes a flange located at an end of the adapter.
3. The valve system of claim 2, wherein the flange includes a generally circular shape.
4. The valve system of claim 1, wherein the adapter is made from one of iron, steel, or a metal alloy.
5. The valve system of claim 1, wherein a height of the adapter is between 5 millimeters and 100 millimeters, and wherein a width of the adapter is between 5 millimeters and 80 millimeters.
6. The valve system of claim 1, further including a bushing mounted in the opening of the housing, the bushing including a first opening at a first end and a second opening at a second end opposite the first end, wherein a portion of the actuator is received by the second opening of the bushing and the valve shaft is received in the first opening of the bushing.
7. The valve system of 6, wherein the second opening of the bushing is larger than the first opening of the bushing.
8. A valve system for an internal combustion engine, comprising: a valve including: a housing with a bore through which fluid may flow; a bushing mounted in the housing, the bushing including a first opening at a first end and a second opening at a second end opposite the first end; a valve member positioned within the bore for selectively restricting flow through the bore, the valve member including a valve shaft rotatably received in the first opening of the bushing, wherein the valve shaft includes a recess; an actuator, wherein a portion of the actuator is received in the second opening of the bushing such that the actuator is coupled to the housing of the valve, the actuator including an actuator shaft with an end portion; and an adapter coupling the valve shaft and the actuator shaft, the adapter including: a body having a first shape corresponding to a first shape of the recess of the valve shaft for fitting the adapter within the recess; and an aperture extending into the body, the aperture having a second shape corresponding to a second shape of the end portion of the actuator shaft for press fitting the adapter onto the actuator shaft, wherein the second shape is different than the first shape and includes more contact surfaces than the first shape, wherein the adapter is fit within the recess and press fit coupled to the actuator shaft so that the actuator can selectively move the valve member between an open position and a closed position.
9. The valve system of claim 8, wherein the recess of the valve shaft includes a generally hexagonal shape.
10. The valve system of claim 9, wherein the end portion of the actuator shaft includes a generally double-d shape.
11. The valve system of claim 10, wherein the body of the adapter includes a generally hexagonal shape corresponding to the generally hexagonal shape of the recess of the valve shaft.
12. The valve system of claim 11, wherein the aperture of the adapter includes a generally double-d shape corresponding to the generally double-d shape of the actuator shaft.
13. The valve system of claim 12, wherein the adapter includes a flange located a top end of the body.
14. The valve system of claim 8, wherein the second opening of the bushing is larger than the first opening of the bushing.
15. The valve system of claim 13, wherein the flange includes a generally circular shape.
16. The valve system of claim 8, wherein the adapter is made from one of iron, steel, or a metal alloy.
17. The valve system of claim 8, wherein a height of the adapter is between 5 millimeters and 100 millimeters, and wherein a width of the adapter is between 5 millimeters and 80 millimeters.
18. The valve system of claim 17, wherein a height of the aperture corresponds to the height of the adapter.
19. The valve system of claim 12, wherein the generally double-d shape includes a perimeter formed from diametrically opposed arc segments of a circle, the circle being truncated on opposite sides thereof by a pair of chords equidistant from and parallel to a diameter which perpendicularly bisects the arc segments.
20. The valve system of claim 8, wherein the valve is a butterfly valve and the valve member is a valve plate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate various exemplary embodiments and together with the description, serve to explain the principles of the disclosed embodiments.
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION
(6) Both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the features, as claimed. As used herein, the terms “comprises,” “comprising,” “having,” “including,” or other variations thereof, are intended to cover a non-exclusive inclusion such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements, but may include other elements not expressly listed or inherent to such a process, method, article, or apparatus. Moreover, relative terms, such as, for example, “about,” “substantially,” “generally,” and “approximately” are used to indicate a possible variation of ±10% in a stated value.
(7)
(8) Valve 12 may include a valve housing 16 or body with a bore 18 through which a fluid, such as gas, may flow. Bore 18 may include a generally cylindrical shape. However, bore 18 may be any shape or size as necessary for allowing fluid to flow therethrough. A stem or valve shaft 20 may be rotatably mounted within a corresponding opening 22 of the valve housing 16. A valve member, such as valve plate 24, may be mounted on the valve shaft 20. Valve plate 24 may be generally circular shaped and may be dimensioned to fit within bore 18. The assembly of the valve shaft 20 and the valve plate 24 may be configured so as to be moveable or rotatable within bore 18 between a first open position (shown in
(9) Actuator 14 may be mounted on a top side of the valve housing 16. In one embodiment, actuator 14 may be a rotary hydraulic actuator (RHA). However, actuator 14 may be any type of actuator including electrical, gear or lever driven, pneumatic, or the like. Actuator 14 may include an actuator shaft 28 extending through the opening 22 of valve housing 16. Actuator shaft 28 may be coupled to a top end of valve shaft 20. As such, actuator 14 may control rotation of valve shaft 20 and thus position of valve plate 24 within bore 18. For example, actuator 14, through actuator shaft 28, may selectively rotate valve shaft 20 such that valve plate 24 moves between the first open position and the second closed position for selectively restricting fluid flow through bore 18. Valve system 10 may further include an adapter 40 for coupling actuator shaft 28 to valve shaft 20, as further detailed below.
(10)
(11) As further shown in
(12) Adapter 40 may include a body 42 having a shape corresponding to the shape of recess 36 of valve shaft 20. As such, adapter 40 may be configured to be inserted or fit into recess 36 of valve shaft 20. Adapter 40 may further include a flange 44 located at a top end of body 42. Flange 44 may extend over a top end of valve shaft 20 when adapter 40 is inserted into recess 36. Additionally, adapter 40 may include a central aperture 46 extending through the body 42 of adapter 40. Aperture 46 may include a shape corresponding to the shape of end portion 38 of actuator shaft 28. Aperture 46 may further include a size that is slightly smaller than a size of end portion 38 of actuator shaft 28, such that adapter 40 may be press fit onto end portion 38 of actuator shaft 28 prior to being inserted into recess 36 of valve shaft 20. As used herein, “press fit” may include a fastening between two parts which is achieved by friction after the parts are pushed together such that the parts do not move relative to each other. For example, end portion 38 of actuator 28 may be press fit into aperture 46 of adapter 40, such that end portion 38 does not move relative to adapter 40. Thus, adapter 40 may assist in coupling actuator shaft 28 to valve shaft 20 and may provide additional contact surfaces between actuator shaft 28 and valve shaft 20.
(13)
(14) As further shown in
(15)
(16) Upper portion 58 of body 54 may include a generally cylindrical shape and may include a larger diameter than lower portion 56 such that upper portion 58 is wider than lower portion 56. Similar to flange 44 of adapter 40, upper portion 56 may include a thickness and a diameter such that upper portion 56 extends over a top surface of valve shaft 20 when adapter 52 is inserted into recess 36 of valve shaft 20. However, the thickness and diameter of upper portion 58 of adapter 52 may be different than the thickness, t, and diameter, d, of flange 44 of adapter 40. For example, the thickness of upper portion 58 may be between 5 millimeters and 50 millimeters and the diameter of upper portion 58 may be between 5 millimeters and 50 millimeters. Further, adapter 52 may be made from iron, steel, metal alloys, or the like.
(17) As further shown in
INDUSTRIAL APPLICABILITY
(18) The disclosed aspects of adapters 40, 52 may be used in any valve system 10 having an actuator shaft 28 inserted into a recess 36 of a valve shaft 20. Referring to
(19) It will be apparent to those skilled in the art that various modifications and variations can be made to the disclosed system without departing from the scope of the disclosure. For example, while adapter 40, 52 is described above as having flange 44 or upper portion 58, it is understood that the flange 44 or upper portion 58 could be omitted so that the adapter 40, 52 includes only a body 42, 54. Other embodiments of the disclosure will be apparent to those skilled in the art from consideration of the specification and practice of the invention disclosed herein. It is intended that the specification and examples be considered as exemplary only, with a true scope and spirit of the invention being indicated by the following claims.