Device for a valve having first and second fluid ports, including a closure element
09709176 · 2017-07-18
Assignee
Inventors
Cpc classification
F16K7/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K1/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K41/103
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K7/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16K7/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K41/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A device in a valve includes a valve housing with at least a first and a second fluid port. A closure element including a sealing portion and a diaphragm is arranged in the valve housing. The sealing portion is movable between an open position and a closed position. The closure element and valve housing form a flow passage which communicates with the fluid ports when the sealing portion leaves the closed position. A second sealing portion is arranged in contact with a support portion of the valve housing. An abutment element is arranged in contact with the second sealing portion. The abutment element transmits a force via the second sealing portion toward the support portion to provide a seal. The force is at least partly exerted by a spring element.
Claims
1. A device in a valve comprising: a valve housing with at least a first and a second fluid port; a closure element being arranged in the valve housing, the closure element having a sealing portion and comprising a diaphragm, the sealing portion being movable along an axis of the closure element by means of said diaphragm between an open position and a closed position of at least one of the fluid ports of the valve housing, the closure element together with the valve housing forming a flow passage in the valve housing which communicates with said fluid ports when the sealing portion leaves said closed position, a second sealing portion of the closure element adapted to come in contact with a support portion of the valve housing, wherein said closure element is movable between an open position and a closed position inside the valve housing; and an abutment means being arranged in contact along a periphery of said second sealing portion in such manner that said second sealing portion is arranged between the support portion and the abutment means, the abutment means being arranged to transmit a force via said second sealing portion towards the support portion to provide a seal, and wherein said abutment means is a compression spring that exerts pressure on said closure element.
2. A device as claimed in claim 1, wherein said compression spring is arranged so as to provide a compressive force parallel with said axis.
3. A device as claimed in claim 1, in which said second sealing portion of the closure element has a sealing region and the valve housing has a complementary seat portion for mutual sealing.
4. A device as claimed in claim 1, in which the sealing portion of the closure element is operably connected to an actuator, the device further having a coupling device which has a lock adapted to be connected to the valve housing, and an actuating device adapted to be connected to the coupling device to operate the actuator.
5. A device as claimed in claim 4, in which the actuator is elongate and arranged so that its longitudinal axis coincides with said axis of the closure element and further arranged in an actuator recess through a recess in the coupling device.
6. A device as claimed in claim 4, in which the abutment means is adjustably arranged in the coupling device by a thread bushing.
7. A device as claimed in claim 6, in which the thread bushing is externally threaded and connected to a recess in the coupling device.
8. A device as claimed in claim 1, further comprising an actuator comprising a spindle having one end connectable to said closure element, wherein rotation of said actuator causes said sealing portion to move along said axis of the closure element between said open position and said closed position of said at least one of the fluid ports of the valve housing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will in the following be described with reference to the accompanying drawings, which by way of example illustrate preferred embodiments of the invention.
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DESCRIPTION OF PREFERRED EMBODIMENTS
(14)
(15) A preferably movable closure element 5 is adapted to be arranged in the cavity of the valve housing 2. The closure element is preferably rotationally symmetrical with an upper end, a sealing portion 14, adapted to an upper portion 12 of the valve housing 2. The closure element 5 has another sealing portion 15, in this embodiment a lower end, which is adapted to a lower portion 13 of the valve housing 2 to be mutually sealable adjacent the first fluid port 3 in use. With reference to
(16) With reference to
(17) Referring once more to
(18) With reference to
(19) The lower end of the thread bushing 20 is suitably provided with an abutment means 16 which is fastened to be rotatable on the thread bushing. The abutment means 16, which is to be seen in
(20) With reference to
(21) Referring once more to
(22) The actuating device 10 is preferably connectable to the coupling device 7 by an annular fastening means 24. The fastening means 24 is suitably provided with an internal thread which is adapted to a complementary external thread of the coupling device 7 for interconnection.
(23) The actuating device can be actuated by manual or pneumatic, hydraulic or electrical control or alternatively a combination thereof.
(24) The valve housing 2, the coupling device 7, the abutment means 16 and the actuator 6 are preferably made of metal, such as stainless steel or aluminium, but may, of course, be made of other materials or combinations of materials that meet the requirements and wishes according to the intentions of the invention. The thread bushing 20 is suitably made of metal, such as bronze, in order to ensure easy operation of the same and, for instance, allow low friction.
(25) The closure element 5 according to the first embodiment is preferably made of a flexible polymer, such as Teflon, polytetrafluoroethylene (PTFE).
(26) The closure element 5 may, of course, be made of other materials that meat the requirements and wishes of the invention, such as rubber or a combination of PTFE and rubber.
(27) The requirements and wishes as to materials that can be placed on the invention may, for example, be chemical resistance, temperature and pressure resistance. These materials and material needs may, of course, be varied in view of the application concerned.
(28) Components such as the interior of the valve housing 2, the fluid ports 3, 4, the closure element 5, the actuator 6, the coupling device 7, the abutment means 16 and the connection opening 17 are substantially circular in cross-section, but may of course have a different shape as long as the objects and requirements of the invention are met. Other conceivable shapes can be oval, square or some kind of regular or irregular polygonal shape.
(29) The mounting of the valve 1 and the other components will now be described in the following with reference to
(30) As mentioned above, the valve housing 2 has a connection opening 17 in the upper portion 12 of the valve housing, see
(31) With reference once more to
(32) The abutment means 16 is connected to the lower end of the thread bushing 20 suitably by means of the locking washer 21. The upper end of the thread bushing is screwed from below into the internally threaded hole 19 of the coupling device 7. Thus the abutment means 16 is adjustably connected to the coupling device 7 on the underside thereof by the thread bushing 20. During mounting, the abutment means is in its upper position so as to abut against the underside of the coupling device, which is seen in
(33) As shown in
(34) The locking means 8 is preferably an annular nut means. An appropriate tool (not shown) thus suitably performs the connection so that the locking means 8 and the upper valve housing portion 12 abut against each other in a reliable manner.
(35) With reference to
(36) The Allen key can advantageously be what is referred to as a torque wrench, which ensures that a similar adjusted torque is applied in each press-fit operation which, for example, takes place in connection with maintenance.
(37) With reference to
(38) After that, the actuating device is arranged over the coupling device and rotated so that the pin 23 is threaded into the upper portion of the actuator 6. The fastening means 24 of the actuating device 10 is then attached by screwing and tightened with an appropriate tool (not shown).
(39) In addition to this description of mounting, the respective fluid ports are of course connected to fluid lines, but since this takes place according to prior art technique and is not a direct part of the invention, this operation is left out of the description.
(40) The function of the valve 1 and the other components will now be described in the following with reference to
(41) When a user intends to open the valve 2 provided with a manual actuating device 10, he turns a handle 28, see
(42) Due to the movement of the actuator 6, the closure element 5 moves in the same off direction, see
(43) Correspondingly, but in the opposite direction, the closing process of the valve takes place when the handle of the actuating device is turned to the closing position, whereby the first fluid port 3 is again closed, see
(44) In operation, the coupling device 7 ensures that the sealing region 29, together with the seat portion 31 of the valve housing, under the action of the abutment means 16 has the required sealing function. In order to demonstrate leakage in this seal, an indication passage 32 is arranged in the coupling device 7, see
(45) With reference to
(46) When the abutment means 16 is moved toward the closure element 5, a preferably uniformly distributed force is peripherally applied between the above components for mutual sealing. This force is suitably transmitted centrally by the thread bushing 20 as force-transmitting means. This single adjusting means results in adjustment being achieved in a simple and uniform manner. In the valve housing 2, the support portion 25 and the seat portion 31 act as an abutment for the closure element so that the abutment means 16 obtains the desired function. In the opposite direction, the coupling device 7 together with the thread bushing 20 acts as an abutment for the press-fit force exerted by the abutment means 16.
(47) The abutment means 16 preferably exerts a pressure, at a suitable radial distance from its centre, on the closure element 5 adjacent the edge portion 26. This distance is adjusted so that the closure element 5 can flex adjacent the flexible portion 30 for actuating the valve 1. In other words, the closure element has adjacent said portion 30 at the end, the sealing portion 14, some freedom of movement so that the closure element can move in the intended vertical direction.
(48) The abutment means 16 preferably abuts on both sides of the edge portion 26 of the closure element 5 to ensure adequate abutment. This press-fit abutment force results in the desired sealing function between the sealing region 29 and the seat portion 31. The invention according to the second embodiment will now be described. The closure element 5 has a shape which is preferably adapted to the abutment means 16. The closure element 5 according to the second embodiment is suitably made of a resilient soft material, such as silicone, ethylene-propylene rubber (EPDM), fluorinated rubber (FPM; viton).
(49) The closure element 5 can, of course, be made of another material which has the properties that are required according to the intentions of the invention.
(50) The above closure element 5 can have, for example, a metal core which is directly or indirectly connectable to the actuating device 10. The closure element 5 preferably has good sealing properties independently of pressure and temperature changes, the abutment means 16 being pressed directly against the closure element 5, whereby sealing occurs between the sealing region 29 and the seat portion 31.
(51) In
(52)
(53) In
(54) Yet another alternative embodiment of the device according to the invention is shown in
(55) Another embodiment of the device according to the present invention is shown is
(56) It will be appreciated that the above described embodiments of the present invention can be modified and varied by as person skilled in the art, without departing from the inventive concept defined in the claims. For instance, the valve and its components according to the present invention with the various fastening means, locking means, thread bushings can, of course, be provided in various ways such as detachable joints (for instance screw, spline, key, clamp, press and shrink joints) or alternative other elastic joints or power joints, but also in some applications, permanent joints (weld, glue and rivet joints). It goes without saying that it is also possible to combine the various spring alternatives. For example, the valve with its components may consist of several parts both as separate or composite components, such as several fluid ports, valve housings, closure elements, abutment means, coupling devices, thread bushings. The above-mentioned components can also be integrated when convenient and when allowed by the application.
REFERENCE NUMERALS
(57) 1. valve 2. valve housing 3. first fluid port, fluid opening 4. second fluid port, fluid side opening 5. closure element 6. actuator 7. coupling device 8. locking means (coupling device) 9. adjusting screw 10. actuating device 11. flow passage, passage portion 12. upper portion valve housing 13. lower portion valve housing 14. sealing portion 15. sealing portion 16. abutment means; abutment portion 17. connection opening 18. actuating hole 19. hole coupling device 20. thread bushing 21. locking washer 22. groove in actuator 23. pin actuating device 24. fastening means (actuating device) 25. support portion (valve housing) 26. edge portion 27. hole in closure element 28. handle (actuating device) 29. sealing region 30. flexible portion 31. seat portion 32. indication passage 33. worm gear 34. nut 35. compression spring 36. spring washer 37. ridge 38. bolt