Flow control valve for flow controller
US-9625047-B2 · Apr 18, 2017 · US
US10247326B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10247326-B2 |
| Application number | US-201715638498-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 30, 2017 |
| Priority date | Jul 1, 2016 |
| Publication date | Apr 2, 2019 |
| Grant date | Apr 2, 2019 |
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A linear valve drive for connection to a valve body which has a valve seat is described, wherein said linear valve drive comprises a drive housing, a valve closure element and a piezoelectric actuator which is arranged within said drive housing. Said valve closure element is displaceable in the axial direction between an open position and a closed position by means of said piezoelectric actuator and an interposed actuating device. Said piezoelectric actuator is supported on said actuating device via its side directed towards the valve closure element. Said linear valve drive comprises an adjusting device which is configured such that an idle stroke of said linear valve drive is adjustable. A valve is also described.
Opening claim text (preview).
What is claimed: 1. A linear valve drive for connection to a valve body which has a valve seat, comprising a drive housing, a valve closure element, an entrainment element, a piezoelectric actuator having a free end facing away from the valve closure element, which piezoelectric actuator is arranged within said drive housing, and an adjusting device comprising a pulling sleeve coupled to a holding element at one end and the entrainment element at another end, wherein the holding element presses against a bearing part at the free end of the piezoelectric actuator, which adjusting device is configured such that a length of an idle stroke of said linear valve drive is adjustable by actuation of the adjusting device to change axial positioning of the pulling sleeve relative to the piezoelectric actuator, said valve closure element being displaceable in an axial direction between an open position and a closed position by means of said piezoelectric actuator and an interposed actuating device, said piezoelectric actuator being supported on said actuating device via its side directed towards said valve closure element. 2. The linear valve drive as claimed in claim 1 , wherein said actuating device comprises an entrainment element and a pulling piece. 3. The linear valve drive as claimed in claim 2 , wherein a clearance between said entrainment element and said pulling piece is adjustable by said adjusting device, said clearance corresponding to said idle stroke. 4. The linear valve drive as claimed in claim 1 , wherein said adjusting device comprises an axially displaceable pulling sleeve which at least partially surrounds said piezoelectric actuator and which is part of said actuating device. 5. The linear valve drive as claimed in claim 4 , wherein said pulling sleeve is fixedly coupled to said entrainment element of said actuating device. 6. The linear valve drive as claimed in claim 1 , wherein said actuating device has a bearing element which is directly coupled to said piezoelectric actuator and on which said piezoelectric actuator is supported. 7. The linear valve drive as claimed in claim 6 , wherein said bearing element is fixedly mounted in said drive housing. 8. The linear valve drive as claimed in claim 5 , wherein said pulling sleeve has at least one aperture, through which said bearing element extends. 9. The linear valve drive as claimed in claim 1 , wherein said actuating device comprises a spring system, by means of which said piezoelectric actuator is pre-loaded. 10. The linear valve drive as claimed in claim 9 , wherein said spring system is supported with one side on said bearing element. 11. The linear valve drive as claimed in claim 10 , wherein said spring system is supported on the side of said bearing element opposite the piezoelectric actuator. 12. The linear valve drive as claimed in claim 1 , wherein a closing spring is provided which is supported on said drive housing and urges said valve closure element away from said piezoelectric actuator. 13. The linear valve drive as claimed in claim 1 , wherein said piezoelectric actuator does not transmit any force to said valve closure element in said closed position. 14. The linear valve drive as claimed in claim 1 , wherein said valve closure element comprises a sealing portion and a diaphragm portion. 15. The linear valve drive as claimed in claim 14 , wherein said sealing portion and said diaphragm portion are formed together in one piece. 16. A valve comprising a linear valve drive as claimed in claim 1 . 17. The valve as claimed in claim 16 , wherein said valve is a normally closed valve. 18. The valve as claimed in claim 16 , wherein said valve body comprises at least one of at least one inflow channel, at least one outflow channel and at least one collecting space. 19. The linear valve drive as claimed in claim 7 , wherein said pulling sleeve has at least one aperture, through which said bearing element extends. 20. A linear valve drive for connection to a valve body which has a valve seat, comprising a drive housing, a valve closure element, and a piezoelectric actuator which is arranged within said drive housing, said valve closure element being displaceable in an axial direction between an open position and a closed position by means of said piezoelectric actuator and an interposed actuating device, said piezoelectric actuator being supported on said actuating device via its side directed towards said valve closure element, said linear valve drive comprising an adjusting device which is configured such that an idle stroke of said linear valve drive is intentionally introduced and variably adjustable.
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