Fluid control system
US-2022372997-A1 · Nov 24, 2022 · US
US12435813B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12435813-B2 |
| Application number | US-202318525697-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 30, 2023 |
| Priority date | Nov 30, 2022 |
| Publication date | Oct 7, 2025 |
| Grant date | Oct 7, 2025 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
An electrohydraulic valve includes a valve housing having a common chamber and a metering port in communication with the common chamber. The valve housing is coupled to a valve manifold having an inlet port and an outlet port. A first nozzle in fluid communication with the inlet port has a first orifice. A second nozzle in fluid communication with the outlet port has a second orifice. A first valve disposed within the common chamber is operable to move the first valve between a closed position where the first valve closes the first orifice and an open position where the first valve opens the first orifice. A second valve disposed within the common chamber is operable to move the second valve between a closed position where the second valve closes the second orifice and an open position where the second valve opens the second orifice.
Opening claim text (preview).
The invention claimed is: 1. An electrohydraulic valve comprising: a valve manifold having an inlet port and an outlet port; a valve housing having a common chamber defined therein, a metering port in communication with the common chamber, and a first end coupled to the valve manifold; a first nozzle in fluid communication with the inlet port, the first nozzle having a first nozzle tip portion disposed within the common chamber, the first nozzle tip portion including a first orifice; a second nozzle in fluid communication with the outlet port, the second nozzle having a second nozzle tip portion disposed within the common chamber, the second nozzle tip portion including a second orifice; a first valve plug disposed within the common chamber and positioned in opposing relation to the first orifice; a first valve actuator coupled to the first valve plug and operable to move the first valve plug between a closed position in which the first valve plug contacts the first nozzle tip portion and closes the first orifice and an open position in which the first valve plug is offset from the first nozzle tip portion and a first gap is created between the first valve plug and the first orifice for passage of fluid from the first orifice to the common chamber; a second valve plug disposed within the common chamber and positioned in opposing relation to the second orifice; a second valve actuator coupled to the second valve plug and operable to move the second valve plug between a closed position in which the second valve plug contacts the second nozzle tip portion and closes the second orifice and an open position in which the second valve plug is offset from the second nozzle tip portion and a second gap is created between the second valve plug and the second orifice for passage of fluid from the common chamber to the second orifice; and a first stroke adjustment coupled to the first valve plug and operable to adjust a position of the first valve plug relative to the first nozzle tip portion, wherein the first stroke adjustment comprises a first adjustment head coupled to the first valve plug and a first adjusting screw threadedly coupled to the first adjustment head, wherein rotation of the first adjusting screw causes translation of the first adjustment head along the first adjusting screw; and wherein the first valve actuator comprises a first piezo actuator having a first piezo element and a first flexure element, and wherein the first flexure element is coupled at a first end to the first valve plug and at a second end to the first adjustment head. 2. The electrohydraulic valve of claim 1 , wherein the second valve actuator comprises a second piezo actuator having a second piezo element and a second flexure element, and wherein the second flexure element is coupled to the second valve plug. 3. The electrohydraulic valve of claim 2 , wherein the second valve actuator comprises a third piezo actuator having a third piezo element and a third flexure element, and wherein the third flexure element is coupled to the second flexure element. 4. The electrohydraulic valve of claim 1 , wherein the valve housing comprises a valve body portion in which the common chamber is defined and a valve cap portion enclosing one end of the common chamber. 5. The electrohydraulic valve of claim 4 , further comprising: a second stroke adjustment coupled to the second valve plug and operable to adjust a position of the second valve plug relative to the second nozzle tip portion. 6. The electrohydraulic valve of claim 5 , wherein the second stroke adjustment comprises a second adjustment head coupled to the second valve plug and a second adjusting screw threadedly coupled to the second adjustment head, and wherein rotation of the second adjusting screw causes translation of the second adjustment head along the second adjusting screw. 7. The electrohydraulic valve of claim 6 , wherein the second adjusting screw is rotatably coupled to the valve cap portion and axially restrained relative to the valve cap portion. 8. The electrohydraulic valve of claim 6 , wherein the second valve actuator comprises at least one piezo actuator having a piezo element and a flexure element, wherein the flexure element of the at least one piezo actuator is coupled at a first side to the second valve plug and coupled at a second side to the second adjustment head. 9. The electrohydraulic valve of claim 6 , wherein the second valve actuator comprises a first piezo actuator having a first piezo element and a first flexure element, wherein the second valve actuator comprises a second piezo actuator having a second piezo element and a second flexure element, wherein the first flexure element of the first piezo actuator of the second valve actuator is coupled at a first side to the second valve plug and at a second side to a first side of the second flexure element of the second piezo actuator of the second valve actuator, and wherein the second flexure element of the second piezo actuator of the second valve actuator is coupled at a second side to the second adjustment head. 10. The electrohydraulic valve of claim 6 , wherein the first adjustment head is received within a first bore formed in the valve cap portion and is movable axially within the first bore in response to rotation of the first adjusting screw, and wherein the second adjustment head is received within a second bore formed in the valve cap portion and is movable axially within the second bore in response to rotation of the second adjusting screw. 11. The electrohydraulic valve of claim 4 , wherein the first adjusting screw is rotatably coupled to the valve cap portion and axially restrained relative to the valve cap portion. 12. The electrohydraulic valve of claim 4 , further comprising a pressure transducer coupled to the valve cap portion and an opening in the valve cap portion forming a pressure communication path between the pressure transducer and the common chamber. 13. The electrohydraulic valve of claim 4 , further comprising an electrical feedthrough coupled to the valve cap portion and electrically connected to the first valve actuator and the second valve actuator within the common chamber. 14. The electrohydraulic valve of claim 13 , wherein the metering port is formed in the valve cap portion and includes a fitting for connection of a hydraulic fluid line. 15. The electrohydraulic valve of claim 1 , wherein the valve manifold comprises a first bore connected to the inlet port and a second bore connected to the outlet port, wherein the first nozzle is mounted within the first bore with the first nozzle tip portion projecting into the common chamber, and wherein the second nozzle is mounted within the second bore with the second nozzle tip portion projecting into the common chamber. 16. The electrohydraulic valve of claim 1 , wherein a portion of the first valve plug positioned in opposing relation to the first orifice comprises a first seal member, and wherein a portion of the second valve plug positioned in opposing relation to the second orifice comprises a second seal member.
Piezoelectric stacks · CPC title
using piezoelectric means · CPC title
Electric · CPC title
fluid · CPC title
Microvalves (microdevices B81B1/00; manufacture or treatment of devices or systems in or on a substrate B81C1/00; microfluidic structures B01L3/5027; micropumps F04B19/006) · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.