INTERNAL VALVE TRANSMITTER FLANGE
20200102973 ยท 2020-04-02
Inventors
Cpc classification
F16K24/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/50
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F15B13/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K31/50
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K27/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B20/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B21/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K27/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K25/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K27/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A transmitter flange includes a flange body having a valve opening therein, the valve opening having a valve seat, and an internal valve configured to be retained in the valve opening. A retaining ring may be configured to thread into the valve opening to further retain the internal valve within the opening.
Claims
1. A transmitter flange, comprising: a flange body having a valve opening therein, the valve opening having a valve seat and internal threads; and an internal valve configured to be retained in the valve opening, the internal valve having external threads configured to thread into the internal threads to retain the internal valve in the valve opening.
2. The transmitter flange of claim 1, wherein the valve opening is at a side of the flange body.
3. The transmitter flange of claim 1, wherein the internal valve has a valve seating surface, the valve seating surface and the valve seat being foiiiied of metal, and forming a metal on metal seal therebetween when the internal valve is retained in the valve opening.
4. The transmitter flange of claim 1, and further comprising a retaining ring, the retaining ring configured to thread into the valve opening to further retain the internal valve within the opening.
5. The transmitter flange of claim 1, wherein the internal valve is recessed into a face of the flange body when retained therein.
6. The transmitter flange of claim 1, wherein the flange is a coplanar flange.
7. The transmitter flange of claim 1, wherein the internal valve has a drain hole machined therein.
8. The transmitter flange of claim 1, wherein the flange body has a drain hole machined therein between the valve opening and an external surface of the flange body.
9. The transmitter flange of claim 1, wherein a stem of the internal valve comprises: a non-rotating stem portion having a seating surface configured to engage the valve seat, the non-rotating stem portion slidably engaged in the valve opening; and a rotating stem joint, rotatably coupled to the non-rotating stem portion, the rotating stem joint threaded for retention in the threaded valve opening.
10. The transmitter flange of claim 1, wherein the valve opening is through a center of the flange body.
11. The transmitter flange of claim 10, wherein the internal valve is configured to have a valve stem that is pressure energized by process fluid on the valve stem when the flange is coupled to a process.
12. The transmitter flange of claim 1, wherein the internal valve has a hex opening configured to facilitate threading the internal valve into the drain opening.
13. A transmitter flange, comprising: a flange body having a valve opening therein, the valve opening having a valve seat; an internal valve configured to be retained in the valve opening; and a retaining ring configured to thread into the valve opening to further retain the internal valve within the opening.
14. The transmitter flange of claim 13, wherein the retaining ring comprises a hex opening configured to facilitate threading the retaining ring to the valve opening.
15. The transmitter flange of claim 13, wherein the valve opening is at a side of the flange body.
16. The transmitter flange of claim 13, wherein the internal valve has a valve seating surface, the valve seating surface and the valve seat being foimed of metal, and forming a metal on metal seal therebetween when the internal valve is retained in the valve opening.
17. The transmitter flange of claim 13, wherein the internal valve is recessed into a face of the flange body when retained therein.
18. The transmitter flange of claim 13, wherein the flange is a coplanar flange.
19. The transmitter flange of claim 13, wherein the internal valve has a drain hole machined therein.
20. The transmitter flange of claim 13, wherein the flange body has a drain hole machined therein between the valve opening and an external surface of the flange body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF ILLUSTRATIVE EMBODIMENTS
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[0025] Modern process pressures can reach 24,000 PSI or more. Typical welded solutions cannot provide security and reliability at those pressures.
[0026] An internal valve flange 500 according to an embodiment of the present disclosure is shown in
[0027] Flange 500 comprises a flange body 502, an internal valve stem 504 that is internal to flange body 504, and retaining ring 506 configured to retain the internal valve stem 504 within flange body 502. Flange body 502 has an opening 508 that is sized to accommodate the internal valve stem 504, and has a valve seat 510 within the opening. Flange body 502 and internal valve stem 504 are each fomted of metal, and the interface between flange body 502 and internal valve stem 504 is a metal on metal seal between seating surface 511 of internal valve stem 504 and valve seat 510. Such a seal, at the process pressure retaining area 520 in opening 508 has no ball such as ball 110, and no significant plastic deformation that would be enough to cause leaks, providing a leak tight seal at a wide range of pressures, including pressures higher than the ball valve shown in
[0028] In one embodiment, flange body opening 508 is threaded with internal threads to threadedly accommodate internal valve stem 504. In this embodiment, internal valve stem 504 has external threads that thread into internal threads to secure the internal valve stem 504 within opening 508. Internal valve stem 504 in one embodiment includes a hex opening to allow a standard hex Allen wrench to be used for threading the internal valve stem into opening 508. The opening 508 is sized in one embodiment so that internal valve stem 504 is recessed in flange opening 508 when it is seated at the valve seat 510. The recessed internal valve stem protects the valve from being disturbed unintentionally while in operation.
[0029] Flange opening 508 is in one embodiment further threaded to threadedly accommodate retaining ring 506 to hold valve stem 504 in place. In this embodiment, valve stem 504 may not be threaded into opening 508, but retained with retaining ring 506. Alternatively, the valve stem 504 may be threaded into opening 508, and further retained by threaded retaining ring 506.
[0030] Further details of retaining ring 506 are shown in
[0031] Internal valve stem 504 seals with flange 502 at valve seat 510. The process pressure retaining area of flange 500 depends on the area 520 of the seal. The surface area of the valve which retains process pressure is significantly reduced from that of the valve of
[0032] Pressures and areas of the typical external valve such as that shown in
TABLE-US-00001 TABLE 1 External Valve Internal Valve A = Pressure Retaining Area = D.sup.2 (.734).sup.2 = .423 in.sup.2 (.188).sup.2 = .028 in.sup.2 P.sub.P = Process Pressure = 20,000 PSI 20,000 PSI 20,000 PSI F.sub.P = Force due to pressure = (P.sub.P)(A) 20,000 psi * .423 in.sup.2 = 8,460 lbf 20,000 psi * .028 in.sup.2 = 560 lbf Stress on Weld = F.sub.P/(Area of Weld) 8460 lbf/.127 in.sup.2 = 66,600 PSI Stress on Threads = F.sub.P/(Area of 560 lbf/.058 in.sup.2 = 9,700 PSI threads)
[0033] In contrast, the pressure retaining area 520 is about 0.028 in.sup.2. With the same process pressure of 20,000 PSI, the force due to pressure is about 560 lbf. The threads of the internal valve stem 504 or the retaining ring 506, or combination thereof are the area that take this pressure in the embodiment of
[0034] In one embodiment, the materials of the flange 500 are made of 316 SST and the yield strength of the parts will be around 65,000 PSI. Based on the pressure calculations, at a process pressure of 20,000 PSI the external valve design will start to yield (66,600 PSI>65,000 PSI). The flange internal valve embodiment remains well below the yield point (9,700 PSI<65,000 PSI). Embodiments of the present disclosure have a higher working pressure limit than external, welded valves and flanges, while also reducing the number of parts, complexity, and offer simpler installation.
[0035] Internal valve flange 500 is in one embodiment provided with a vent/drain hole 530 in the flange body 502 as shown in
[0036] A top view of a flange such as flange 500 is shown in
[0037] As shown in
[0038] As shown in
[0039] Another embodiment of a valve stem 1104 with a non-rotating stem portion 1105 and a rotating stem joint 1107 is shown in
[0040] Although the present invention has been described with reference to preferred embodiments, workers skilled in the art will recognize that changes may be made in foini and detail without departing from the spirit and scope of the invention.