Ball valve
12565935 ยท 2026-03-03
Assignee
Inventors
Cpc classification
F16K5/0605
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K5/0689
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K27/067
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K5/0636
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K5/0694
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K5/0647
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
Ball valve having a housing which comprises at least one inlet opening and at least one outlet opening, between which a regulating chamber is provided, having a valve which is arranged in the regulating chamber and comprises at least one spherical control surface with at least one passage that connects one inflow opening to an outflow opening of the valve, having a connection opening in the housing, which opens into the regulating chamber into which a connection housing can be inserted, wherein at least one seal is provided between the connection housing and the connection opening, and the connection housing comprises a shaft feedthrough having a shaft mounted therein by means of which the valve can be controlled, wherein the valve with the at least one spherical control opening is insertable through the connection opening into the regulating chamber.
Claims
1. Ball valve, having a housing which comprises at least one inlet opening and at least one outlet opening between which a regulating chamber is provided, having a valve which is arranged in the regulating chamber and comprises at least one spherical control surface with at least one passage that connects an inflow opening to an outflow opening of the valve, having a connection opening in the housing, which opens into the regulating chamber into which a connection housing is insertable, wherein at least one seal is provided between the connection housing and the connection opening and the connection housing comprises a shaft feedthrough having a shaft mounted therein to control the valve, wherein the at least one spherical control surface is insertable through the connection opening of the housing into the regulating chamber and is positionable between the inlet opening and the outlet opening, which is provided opposite to the shaft connected with the at least one spherical control surface and the connection opening, and the at least one spherical control surface has a lower connection portion on which a pivot bearing is provided which is positionable in a bearing point of the housing when positioning the at least one spherical control surface in the regulating chamber.
2. Ball valve according to claim 1, characterised in that the housing is formed as a single piece, and the inlet opening and the at least one outlet opening as well as the regulating chamber arranged therebetween and the connection opening are provided in the housing, which connection opening extends between the regulating chamber and an exterior of the housing.
3. Ball valve according to claim 1, characterised in that a closure which has a seal engaging on the spherical control surface is insertable into the inlet opening on one side only, or in that a closure which comprises a seal engaging on the spherical control surface is insertable into the inlet opening and the outlet opening respectively on both sides of the regulating chamber.
4. Ball valve according to claim 1, wherein the pivot bearing is a bearing journal or annular collar, and the pivot bearing engages in a bearing point in the housing or in a bearing bushing which is provided in the bearing point of the housing.
5. Ball valve according to claim 1, wherein the shaft is mounted in the connection housing with at least one sliding sleeve.
6. Ball valve according to claim 1, wherein the spherical control surface has an upper connection portion that is opposite the lower connection portion, wherein the pivot bearing is provided on the lower connection portion and the shaft is provided lying opposite on the upper connection portion.
7. Ball valve according to claim 6, wherein a torsion-proof plug connection is provided between the shaft and the upper connection portion, or in that the shaft is formed as a single piece with the upper connection portion.
8. Ball valve according to claim 1, wherein the at least one spherical control surface, the shaft or in that the at least one spherical control surface and the shaft and the pivot bearing or in that the at least one spherical control surface and the shaft and the pivot bearing and the sliding sleeve are formed integrally with one another.
9. Ball valve according to claim 8, wherein the at least one spherical control surface and/or the shaft, or in that the at least one spherical control surface and the shaft and the pivot bearing, or in that the at least one spherical control surface and the shaft and the pivot bearing and the sliding sleeve are formed as a plastic injection-moulded part or a composite part or a two-component part.
10. Ball valve according to claim 1, wherein at least one shaft portion of the shaft and the spherical control surface are formed without burrs.
11. Ball valve according to claim 1, wherein the spherical control surface is formed on a ball in which the at least one passage between the inflow opening and the outflow opening is formed as a passage channel, wherein the outflow opening is opposite the inflow opening or is aligned at an angle of less than 180.
12. Ball valve according to claim 11, wherein at least one recess is provided on the ball and/or the shaft to reduce an accumulation of material, or in that the ball and the shaft are made from a solid material.
13. Ball valve according to claim 1, wherein the spherical control surface is formed on or as a shell segment which extends only partially in a radial direction.
14. Ball valve according to claim 1, wherein at least two spherical control surfaces are aligned in a row along the longitudinal axis of the shaft and is jointly controllable by the shaft.
15. Ball valve according to claim 1, wherein the ball valve is a switching valve, a metering valve, a multi-way valve or an expansion valve.
16. Ball valve according to claim 1, wherein the spherical control surface is formed on or as a shell segment which extends only partially in a radial direction and the passage is formed through the wall thickness of the shell segment.
Description
(1) The invention and further advantageous embodiments and developments are described and explained in more detail below with reference to the examples shown in the drawings. The features to be taken from the description and the drawings can be applied individually or in any combination according to the invention. The drawings show:
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(16) A regulating chamber 17 is provided between the inlet opening 14 and the outlet opening 16. Furthermore, the housing 12 comprises a connection opening 18, which connects an exterior of the housing 12 to the regulating chamber 17. A valve 19 is arranged in the regulating chamber 17. This valve 19 comprises a spherical control surface 20. In the exemplary embodiment, the spherical control surface is formed on a ball 21. This ball 21 comprises an inflow opening 22 and an outflow opening 23. The inflow opening 22 and the outflow opening 23 are connected to one another by a passage 24. This passage 24 is a channel, for example.
(17) The ball 21 has an upper connection portion 26 and a lower connection portion 27. A pivot bearing 28 is provided on the lower connection portion 27. This pivot bearing 28 can be a journal. This pivot bearing 28 is preferably mounted rotatably in a bearing point 29 in the housing 12. Advantageously, a bearing bushing 31 can be provided in the bearing point 29 to receive the pivot bearing 28. This can improve guidance.
(18) A shaft 33 engages on the upper connection point 26 of the ball 21. This shaft 33 is guided in a connection housing 34. A shaft feedthrough 36 is preferably provided between the shaft 33 and the connection housing 34, thereby enabling a friction-free and/or sealed mounting of the shaft 33 with respect to the connection housing 34.
(19) An upper end of the shaft 33 is guided out opposite the connection housing 34. This upper end of the shaft 33 is rotatably connected to a drive 37. Switching positions of the valve 19 are controlled by this drive 37.
(20) In order to position the valve 19 in the regulating chamber 17, the valve 19 and the connection housing 34 are inserted together into the housing 12 via the connection opening 18. A closure means 39 is then inserted into the inlet opening 14. This closure means 39 has a seal 41 facing the spherical control surface 20. In a switching position, in which the inflow opening 22 is outside the inlet opening 14, the inlet opening 14 is closed so that no medium can reach the outlet opening 16. The spherical control surface 20 of the ball 21 has the advantage for the seal 41 that, regardless of the switching position, the seal 41 can always bear against the spherical control surface 20 in at least two places. The seal preferably bears circumferentially against the ball.
(21) After inserting the connection housing 34 into the connection opening 18 in the housing 12, a detachable fixing, in particular screwing, to the housing 12 preferably takes place. At the same time, the connection opening 18 is sealed therebetween by at least one seal 43.
(22) In this arrangement according to
(23) The connection between the shaft 33 and the spherical control surface 20 or the ball 21 is torsion-proof. Preferably, a plug connection 38 is provided. Alternatively, a press-fit connection, an adhesive connection or a screw connection can also be provided.
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(25) This embodiment of the ball valve 11 has the advantage that the inlet opening 14 and the outlet opening 16 can also be interchanged with respect to the flow direction of the mass flow to be controlled.
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(27) It is provided in this embodiment that the pivot bearing 28 is an annular collar and the inflow opening 22 is provided, for example, within the annular collar.
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(30) In this embodiment, the sliding sleeve 32 is formed or moulded as a single part on the valve 19. Thus, the sliding sleeve 32, like the pivot bearing 28, can be formed integrally with the ball 21 and the shaft 33.
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(32) The upper end of the shaft 33 comprises a toothing 46, which enables a torsion-proof arrangement with the drive 37. Advantageously, another bearing sleeve can be provided between the drive 37 and the toothing of the shaft 33.
(33) In this single-piece embodiment of the valve 19, at least one shaft portion 35 of the shaft 33 and/or the spherical control surface 20 are formed without burrs.
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(35) Such a valve 19 can, for example, create a two-way valve.
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(37) This valve 19 according to
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(39) This valve 19 is formed as a single part. By way of example, this valve 19 can be a plastic injection-moulded part. The shaft 33 can have a recess 51. This recess 51 can extend from the front end, for example to the sliding sleeve 32 or into the ball 21.
(40) At least one recess 52 is provided in the ball 21. Two recesses 52 are shown by way of example in the exemplary embodiment. These recesses 52 extend from the lower connection portion 27 towards the upper connection portion 26. This at least one recess 52 is surrounded by the control surface 20. This recess 52 can also extend between the control surface 20 and the passage 24.
(41) The combination of the recesses 51 and 52 can be as desired. These recesses 51, 52 serve to avoid an accumulation of material. As a result, sinking can be avoided and a high degree of dimensional stability can be achieved. In addition, a hollow shaft can be formed by the recess 51, for example, which has a high rigidity and also a high torsional moment. In particular, this can also reduce the weight of the valve 19.