SEAL ASSEMBLY FOR A VALVE STEM
20170292606 · 2017-10-12
Inventors
Cpc classification
F16J15/185
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K41/003
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/004
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/186
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K41/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/46
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16J15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16J15/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A seal assembly for a valve stem comprises an external seal placed on a valve stem facing an external environment; an internal seal placed on the valve stem facing a process environment; the external and internal seals define a chamber for the containment of barrier fluid; the chamber has an inlet configured to be placed into fluid communication with a source of barrier fluid; a detector of the amount of barrier fluid; a pressurizer device for providing the chamber with a positive pressure with respect to the process environment; the pressurizer device is configured to be installed coaxially with the valve stem.
Claims
1. A seal assembly for a valve stem comprising an external seal adapted to be placed on a valve stem facing an external environment; an internal seal adapted to be placed on said valve stem facing a process environment; said external and internal seals defining in cooperation with each other a chamber for the containment of barrier fluid; said chamber having an inlet configured to be placed into fluid communication with a source of barrier fluid; a detector of the amount of barrier fluid inside said chamber and/or in a reservoir in fluid communication with the chamber; a pressurizer device configured to provide said chamber with a positive pressure with respect to said process environment; wherein the pressurizer device is configured to be installed coaxially with said valve stem.
2. The seal assembly according to claim 1, wherein the pressurizer comprises a piston at least partially defining said chamber, said piston having a process surface configured to contact the process environment and an internal surface configured to contact the barrier fluid.
3. The seal assembly according to claim 2, wherein said internal seals comprise a first internal seal placed between said piston and said stem.
4. The seal assembly according to claim 2, wherein said pressurizer comprises a spring acting on said piston and configured to provide a force on said piston which adds to the process pressure.
5. The seal assembly according to claim 4, wherein said force is applied on the internal surface of said piston.
6. The seal assembly according to claim 4, wherein the spring is configured to be extended by the inflow of barrier fluid inside said chamber.
7. The seal assembly according to claim 4, wherein the pressurizer comprises a flange attached to said piston and facing said internal surface, said force being applied on the flange.
8. The seal assembly according to claim 4, wherein the spring is configured to be compressed by the inflow of barrier fluid inside said chamber.
9. The seal assembly according to claim 4, wherein said detector is configured to detect the pressure difference between process surface and the internal surface of the piston.
10. The seal assembly according to claim 2, wherein said detector is configured to detect the position of the piston inside the chamber directly.
11. The seal assembly according to claim 10, wherein said detector comprises a magnet fixed on the piston and a plurality of proximity switches facing the chamber and configured to interact with the magnet.
12. A valve comprising: a seat; a stem inserted into said seat; and a seal assembly comprising an external seal adapted to be placed on a valve stem facing an external environment; an internal seal adapted to be placed on said valve stem facing a process environment; said external and internal seals defining in cooperation with each other a chamber for the containment of barrier fluid; said chamber having an inlet configured to be placed into fluid communication with a source of barrier fluid; a detector of the amount of barrier fluid inside said chamber and/or in a reservoir in fluid communication with the chamber; a pressurizer device configured to provide said chamber with a positive pressure with respect to said process environment; wherein the pressurizer device is configured to be installed coaxially with said valve stem; wherein said seal assembly is installed onto said stem.
13. The seal assembly according to claim 3, wherein said pressurizer comprises a spring acting on said piston and configured to provide a force on said piston which adds to the process pressure.
14. The seal assembly according to claim 5, wherein the spring is configured to be extended by the inflow of barrier fluid inside said chamber.
15. The seal assembly according to claim 5, wherein the pressurizer comprises a flange attached to said piston and facing said internal surface, said force being applied on the flange.
16. The seal assembly according to claim 5, wherein the spring is configured to be compressed by the inflow of barrier fluid inside said chamber.
17. The seal assembly according to claim 5, wherein said detector is configured to detect the pressure difference between process surface and the internal surface of the piston.
18. The seal assembly according to claim 3, wherein said detector is configured to detect the position of the piston inside the chamber directly.
19. The seal assembly according to claim 6, wherein the pressurizer comprises a flange attached to said piston and facing said internal surface, said force being applied on the flange.
20. The seal assembly according to claim 6, wherein the spring is configured to be compressed by the inflow of barrier fluid inside said chamber.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0009] Further details and specific examples will refer to the attached drawings, in which:
[0010]
[0011]
[0012]
[0013]
[0014]
DETAILED DESCRIPTION
[0015] The following description of exemplary embodiments refer to the accompanying drawings. The same reference numbers in different drawings identify the same or similar elements. The following detailed description does not limit the invention. Instead, the scope of the invention is defined by the appended claims.
[0016] Reference throughout the specification to “one embodiment” or “an embodiment” means that a particular feature, structure, or characteristic described in connection with an embodiment is included in at least one embodiment of the subject matter disclosed. Thus, the appearance of the phrases “in one embodiment” or “in an embodiment” in various places throughout the specification is not necessarily referring to the same embodiment. Further, the particular features, structures or characteristics may be combined in any suitable manner in one or more embodiments.
[0017] Therefore in the attached drawings with the number 1 will be indicated a seal assembly for a valve stem according to an embodiment of the present invention.
[0018] Such seal assembly 1 is configured to be installed onto a valve 100, which will therefore also be briefly described. Indeed, such valve 100 comprises a main body 101 which holds two ports 102. A seat 103 is placed between the two ports 102.
[0019] With more detail, a stem 104 is inserted into the main body 101. A member 105 is attached to the stem 104. The member 105 can move in/out of the seat 103 in order to open and close the valve 100.
[0020] Also, reference will be made to a process environment “P” which, during operation, contains or is directly in contact with a process fluid, and an external environment “E” which is typically an environment which must be kept uncontaminated from process fluid. An example of an external environment “E” can be an atmospheric pressure environment where there is human presence directly exposed to the environment.
[0021] The seal assembly 1 comprises an external seal 2, which is adapted to be placed on the stem 104 facing the external environment “E”. Indeed, the external seal 2 is placed between the main body 101 of the valve 100 and the stem 104.
[0022] The seal assembly 1 also comprises an internal seal 3, which is also adapted to be placed on the stem 104 facing the process environment “P”. More detail about the internal seal 3 will be given in a following part of the present disclosure.
[0023] The external 2 and internal seals 3 define in cooperation with each other a chamber 4 for the containment of barrier fluid. The chamber 4 has an inlet 5, which is configured to be placed into fluid communication with a source of barrier fluid “S”. Such source “S” can be either a reservoir 10 of barrier fluid or a nipple 11 which is used to periodically replenish the barrier fluid inside the chamber 4.
[0024] With more detail, the chamber 4 is defined between the stem 104 and the main body 101. Therefore, the chamber 4 has an annular shape and is coaxial with respect to the stem 104 of the valve 100. Moreover, please note that in the embodiment of
[0025] For this reason, the seal assembly 1 also comprises a detector 6 of the amount of barrier fluid inside the chamber 4, if the chamber has a variable volume, and/or in the reservoir 10 if the chamber 4 volume is fixed. More detail about the detector 6 will be given in a following part of the disclosure.
[0026] A pressurizer device 7 is configured to provide the chamber 4 with a positive pressure with respect to the process environment. In particular, the detector 6 is associated with the pressurizer 7. According to the embodiment shown in
[0027] As shown in
[0028] With additional detail, the pressurizer 7 comprises a piston 8. The piston 8 has the purpose of applying an additional force to the barrier fluid in order to keep it at a high enough pressure. In particular, the piston 8 has a process surface 8a configured to contact the process environment “P”. The piston 8 has an internal surface 8b, which is configured to contact the barrier fluid.
[0029] According to the embodiments of the invention shown in
[0030] In the embodiment of
[0031] With additional detail, in the embodiments shown in
[0032] In the embodiments of
[0033] Referring now specifically to the embodiment of
[0034] With regard to the embodiment of
[0035] In operation, when the chamber 4 is filled with barrier fluid, the piston 8 expands, the flange 12 and the further flange 14 are pushed closer together and thus the spring 9 is compressed. The spring 9 then applies its elastic force to the flange 12 by pushing back onto the further flange 14 which is fixed. As a result, the elastic force from the spring 9 is applied on the flange 12.
[0036] According to the embodiments shown in
[0037] Specifically, in the embodiment of
[0038] In other embodiments, the detector 6 is able to detect the position of the piston 8 directly. One possibility of doing this is shown in
[0039] According to the embodiment shown in
[0040] Specifically, the proximity switches 19 are positioned on the part of the chamber 4 in which the piston 8 moves.
[0041] This written description uses examples to disclose the invention, including the preferred embodiments, and also to enable any person skilled in the art to practice the invention, including making and using any devices or systems and performing any incorporated methods. The patentable scope of the invention is defined by the claims, and may include other examples that occur to those skilled in the art. Such other examples are intended to be within the scope of the claims if they have structural elements that do not differ from the literal language of the claims, or if they include equivalent structural elements with insubstantial differences from the literal languages of the claims.