Double port pressure regulator with floating seat
09678514 ยท 2017-06-13
Assignee
Inventors
- Silviu V. Rebreanu (Cluj-Napoca, RO)
- Istvan Bartha (Odorheiu-Secuiesc, RO)
- Florin R. Roman (Reichenbach, DE)
- Vlad C. Hanceanu (Cluj, RO)
- Aaron P. Oprean (Floresti, RO)
Cpc classification
F16K1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K1/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y10T137/86928
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T137/7846
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T137/7823
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T137/7845
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T137/8741
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
F16K1/44
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K1/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A double port regulator assembly includes a first fluid port and a second fluid port. A fixed valve seat assembly is disposed proximate the first fluid port and a floating valve seat assembly is disposed proximate the second fluid port. A first valve plug cooperates with the fixed valve seat assembly to open and close the first fluid port and a second valve lug cooperates with the floating valve seat assembly to open and close the second fluid port. The floating valve seat assembly includes a floating valve seat that is movable with respect to the fixed valve seat.
Claims
1. A double port regulator comprising: a valve body having a fluid inlet and a fluid outlet connected by a fluid passageway; a first fluid port disposed within the fluid passageway, the first fluid port fluidly connecting the fluid inlet and the fluid outlet; a second fluid port disposed within the fluid passageway, the second fluid port fluidly connecting the fluid inlet and the fluid outlet; a fixed valve seat assembly disposed proximate the first fluid port; a floating valve seat assembly disposed proximate the second fluid port; a first valve plug that cooperates with the fixed valve seat assembly to open and close the first fluid port; and a second valve plug that cooperates with the floating valve seat assembly to open and close the second fluid port, wherein in a first position, the first valve plug is spaced apart from the fixed valve seat assembly and the second valve plug is spaced apart from the floating valve seat assembly, thereby allowing fluid to flow from the fluid inlet to the fluid outlet through both the first fluid port and the second fluid port, wherein in a second position, the first valve plug contacts the fixed valve seat assembly and the second valve plug contacts the floating valve seat assembly, thereby preventing fluid flow from the fluid inlet to the fluid outlet through both the first fluid port and the second fluid port, and wherein in a third position, the first valve plug is spaced apart from the fixed valve seat assembly and the second valve plug contacts the floating valve seat assembly, thereby allowing fluid to flow from the fluid inlet to the fluid outlet through the first fluid port but not through the second fluid port.
2. The double port regulator of claim 1, the floating valve seat assembly comprising: a floating seat retainer having a through bore that forms the second fluid port; and a floating seat at least partially disposed within the through bore, the floating seat being movable along a longitudinal axis of the floating seat retainer.
3. The double port regulator of claim 2, further comprising a disc spring disposed between the floating seat retainer and the floating seat, the disc spring biasing the floating seat away from the fixed valve seat assembly.
4. The double port regulator of claim 3, further comprising a retainer element disposed on the floating seat retainer, the retainer element limiting movement of the floating seat away from the fixed valve seat assembly.
5. A double port regulator comprising: a valve body having a fluid inlet and a fluid outlet connected by a fluid passageway; a first fluid port disposed within the fluid passageway, the first fluid port fluidly connecting the fluid inlet and the fluid outlet; a second fluid port disposed within the fluid passageway, the second fluid port fluidly connecting the fluid inlet and the fluid outlet; a fixed valve seat assembly disposed proximate the first fluid port; a floating valve seat assembly disposed proximate the second fluid port, the floating valve seat assembly including a floating seat retainer having a through bore that forms the second fluid port, a floating seat at least partially disposed within the through bore, the floating seat being movable along a longitudinal axis of the floating seat retainer, a disc spring between the floating seat retainer and the floating seat, the disc spring biasing the floating seat away from the fixed valve seat assembly, and a retainer element disposed on the floating seat retainer, the retainer element limiting movement of the floating seat away from the fixed valve seat assembly; a first valve plug that cooperates with the fixed valve seat assembly to open and close the first fluid port; and a second valve plug that cooperates with the floating valve seat assembly to open and close the second fluid port, wherein in a first position, the first valve plug is spaced apart from the fixed valve seat assembly and the second valve plug is spaced apart from the floating valve seat assembly, thereby allowing fluid to flow from the fluid inlet to the fluid outlet through both the first fluid port and the second fluid port, wherein in a second position, the first valve plug contacts the fixed valve seat assembly and the second valve plug contacts the floating valve seat assembly, thereby preventing fluid flow from the fluid inlet to the fluid outlet through both the first fluid port and the second fluid port, and wherein the retainer element is an annular disc including a base portion connected to a retaining portion by an angled portion.
6. The double port regulator of claim 5, wherein the retaining portion is spaced apart from the floating seat retainer by a tolerance gap.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Objects, features, and advantages of the present invention will become apparent upon reading the following description in conjunction with the drawing figures, in which:
(2)
(3)
DETAILED DESCRIPTION
(4) Certain examples are shown in the above-identified figures and described in detail below. The figures are not necessarily to scale and certain features and certain views of the figures may be shown exaggerated in scale or in schematic for clarity and/or conciseness. Additionally, any features from any exemplary embodiment may be included with, a replacement for, or otherwise combined with other features to form other embodiments.
(5) Turning now to
(6) Fluid flow through the first fluid port 21 and through the second fluid port 23 is controlled by a first valve plug 20, which cooperates with a first valve seat assembly 22, and a second valve plug 24, which cooperates with a second valve seat assembly 26. The first valve plug 20 and the second valve plug 24 are operatively connected to a valve stem 28, which extends through the first fluid port 21 and the second fluid port 23 in the embodiment of
(7) In a first position, the first valve plug 20 is spaced apart from the first valve seat assembly 22, leaving a gap between the first valve plug 20 and the first valve seat assembly 22, and the second valve plug 24 is spaced apart from the second valve seat assembly 26, leaving a gap between the second valve plug 24 and the second valve seat assembly 26. In the first position, fluid is allowed to flow through the fluid passageway 18 from the fluid inlet 14 to the fluid outlet 16 through the first port 21 and through the second port 23. In other words, in the first position, the double port regulator 10 is open.
(8) In a second position, the first valve plug 20 contacts the first valve seat assembly 22 and the second valve plug 24 contacts the second valve seat assembly 26, as illustrated in
(9) In a third position, which is an intermediate position, the first valve plug 20 is spaced apart from the first valve seat assembly 22, and the second valve plug 24 contacts the second valve seat assembly 26, as illustrated in
(10) The actuator 30 positions the first valve plug 20 and the second valve plug 24 to achieve a desired flow rate of fluid through the fluid passageway 18 by varying the distance between the first valve plug 20 and the first valve seat assembly 22, and by varying the distance between the second valve plug 24 and the second valve seat assembly 26. By providing for an intermediate position where only one of the valve plugs contacts a valve seat assembly, manufacturing tolerances may be reduced and shutoff metering of fluid may be improved and more precisely controlled near the cutoff point.
(11) The actuator 30 includes a biasing element, such as an actuator spring 32 that biases a diaphragm 34 towards and/or away from the fluid flow passageway 18. The diaphragm 34 is operatively connected to a diaphragm plate 36, which is operatively connected, in turn, to the valve stem 28. The actuator spring 32 positions the diaphragm 34, which positions the diaphragm plate 36 and the valve stem 28 to locate the first valve plug 20 and to locate the second valve plug 24 as desired to control fluid flow through the fluid passageway 18.
(12) A balance spring 33 may be located on an opposite end of the valve stem 28 from the actuator 30. The balance spring 33 generally opposes the bias of the actuator spring 32. The balance spring 33 reduces oscillations of the valve stem 28 when the valve stem 28 is positioned by the actuator 30. The balance spring 33 may be seated against the second valve plug 24 at one end and within a recess 35 in an end cap 37.
(13) A guide sheath, such as a cylindrical guide sheath 39, may also be seated within the recess 35 and the balance spring 33 may surround the cylindrical guide sheath 39, at least partially. One end of the valve stem 28 may be seated within the cylindrical guide sheath 39 so that the cylindrical guide sheath 39 maintains proper alignment of the valve stem 28 when the valve stem is positioned by the actuator 30.
(14) Turning now to
(15) The first portion 44 may include a seating surface 50 that cooperates with the first valve plug 20 to close or open the first fluid port 21. A fixed seat 52 may be disposed within the second portion 46 to form the first portion 44, in one example. In other embodiments, the fixed seat 52 may be integrally formed with the fixed seat retainer 40. A fixed seat plug 54 may be disposed at least partially within the fixed seat retainer 40. The fixed seat plug 54 may include an upper flange 56, which fits within the third portion 48 of the fixed seat retainer 40. The fixed seat retainer 40 may include one or more annular channels 58 that are sized to retain a seal, such as an o-ring 60. In one embodiment, the fixed seat plug 54 is operatively connected to the fixed seat retainer 40 by a threaded connection 61. In other embodiments, other connections may be used, such as, for example, welded connections, epoxy connections, interference fit connections, crimped connections, etc.
(16) The second seat assembly 26 may be a floating seat assembly. The floating seat assembly may include a valve seat that moves with respect to the valve body 12 or with respect to the first seat assembly 22. The second seat assembly 26 includes a second or floating seat retainer 62. The floating seat retainer 62 includes a through bore 64 that forms the second fluid port 23. The through bore 64 may include a first portion 66 that has a first inner diameter, a second portion 68 that has a second inner diameter, and a third portion 70 that has a third inner diameter. The first inner diameter may be smaller than the second inner diameter, which may be smaller than the third inner diameter.
(17) A floating seat 72 may be at least partially disposed within the second portion 68 and the third portion 70, in one example. The floating seat 72 is movable along a longitudinal axis A of the floating seat retainer 62. The floating seat 72 may include a seating surface 74 that cooperates with the second valve plug 24 to close or open the second fluid port 23. The floating seat 72 may include a lower flange 76 that fits within the third portion 70 of the floating seat retainer 62. The floating seat retainer 62 may include one or more annular channels 78, 80 that are sized to retain a seal, such as o-rings 82, 84. The floating seat 72 may include a first chamfered surface 86 at a first end 87 and a second chamfered surface 88 in an outer surface 89 of the flange 76. The chamfered surfaces 86, 88 may improve assembly and prevent metal to metal galling as the floating seat 72 moves within the floating seat retainer 62.
(18) The floating seat retainer 62 may include an annular shoulder 90 that forms a space 91 between the floating seat retainer 62 and the floating seat 72. A floating seat biasing element, such as a disc spring 92, is disposed within the space 91. The disc spring 92 biases the floating seat 72 away from the fixed seat assembly 22. A retainer element, such as an annular disc 94 is attached to the floating seat retainer 62 proximate the floating seat flange 76. In one embodiment, the annular disc 94 includes a base portion 95 that is connected to a retaining portion 96 by an angled portion 97. The base portion 95 and the retaining portion 96 may be parallel to one another. The angled portion 97 offsets the retaining portion 96 from the floating seat retainer 62, thereby forming a tolerance gap 98. The tolerance gap 98 is preferably between 50% and 75%, more preferably 60% and 75%, and even more preferably about 75% of the height of the lower flange 76. These preferred ranges provide enough rigidity for the annular disc 94 to retain the floating valve seat 72 against pressure loading, while keeping the valve seat assembly 26 to a relatively small overall size.
(19) In the first position, the first valve plug 20 is spaced apart from the fixed valve seat 50, and the second valve plug 24 is spaced apart from the floating seat 72. As the actuator 30 begins to move the valve stem 28 towards the second, closed position, initially, the second valve plug 24 will contact the floating valve seat 72, because the floating valve seat 72 is biased downward in
(20) Although certain double port regulators have been described herein in accordance with the teachings of the present disclosure, the scope of coverage of this patent is not limited thereto. On the contrary, while the invention has been shown and described in connection with various preferred embodiments, it is apparent that certain changes and modifications, in addition to those mentioned above, may be made. This patent covers all embodiments of the teachings of the disclosure that fairly fall within the scope of permissible equivalents. Accordingly, it is the intention to protect all variations and modifications that may occur to one of ordinary skill in the art.