This invention is in the field of plug bodies used in double block plug valves and diverter plug valves found in pipeline applications.
A plug valve includes a tapered (wedge-shaped) central or main plug body that moves the valve's seals (permanently bonded into slips) to and from the valve body (see e.g.
The valve's operator includes a stem or upper trunnion that, unlike the main plug body, is exposed to the environment. Sealing around the upper trunnion is critical to ensure product does not leak out into the environment. Additionally, the upper trunnion experiences the torque load required to open and close the valve during operation. Therefore, some plug valve customers require the upper trunnion to be made from a different material than the main plug body. For example, the upper trunnion can be specified to be made from a stronger and more corrosion resistant material than the rest of the plug body.
The three main ways to meet this different material requirement are: (1) cast the upper trunnion and main plug body as a one-piece casting using the stronger, more corrosion resistant material specified for the upper trunnion (see e.g.
A preferred embodiment of a plug includes an attachable upper trunnion that is assembled to the main plug body using fasteners and a male-female dovetail fit. The tensile and compressive loading experienced by the main plug body during its linear motion, and the torsional loading experienced during its 90° rotation, is supported by the fasteners and the dovetail fit.
Referring to
The main plug body 20 features a male dovetail 27 located in a channel 23 defined by two opposing sidewalls 25 at the upper end 21 of the plug 20. The upper trunnion 30 features a flange 33 having a female dovetail 37 at the lower end 31 of the trunnion 30. The flange 33 and its dovetail 37 are received by the channel 23 and its dovetail 27.
Fasteners 39 then secure the flange 33 in the channel 23 (which provides fastening holes 29 for the fasteners 39). In this assembled state, the tensile and compressive loading experienced by the main plug body 20 during its linear motion, and the torsional loading experienced during its 90° rotation, is supported by the fasteners 39 and the dovetail fit 27, 37.
The main plug body 20 and upper trunnion 30 can be made from the same material or, more preferably, from different materials. For example, the main plug body 20 is a first material and the upper trunnion 30 is a second different material that has higher strength, higher corrosion resistance, or both high strength and corrosion resistance than the first material.
The preferred embodiments described above and illustrated in the drawing figures provide examples of the system and method. The following claims define the inventive system and method and cover the full range of equivalents to which the recited elements of the claims are entitled.
Number | Name | Date | Kind |
---|---|---|---|
668946 | Baker | Feb 1901 | A |
3892381 | Prescott | Jul 1975 | A |
4239185 | Lowe | Dec 1980 | A |
5127628 | Kemp | Jul 1992 | A |
9328827 | Russell | May 2016 | B2 |
9470320 | LaCroix | Oct 2016 | B1 |
20140109970 | Middleton | Apr 2014 | A1 |
Number | Date | Country |
---|---|---|
29500870 | Mar 1995 | DE |
4405089 | Aug 1995 | DE |
1079690 | Aug 1967 | GB |
WO 2006042583 | Apr 2006 | WO |
Entry |
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Control Seal Valve Manufacturer Standard Execution DBBV. |
Number | Date | Country | |
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20170314685 A1 | Nov 2017 | US |