Hydraulic servo valve
US-11047403-B2 · Jun 29, 2021 · US
US12460739B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12460739-B2 |
| Application number | US-202318315164-A |
| Country | US |
| Kind code | B2 |
| Filing date | May 10, 2023 |
| Priority date | May 12, 2022 |
| Publication date | Nov 4, 2025 |
| Grant date | Nov 4, 2025 |
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A servo valve comprising: a fluid transfer valve assembly includes: a housing having channel therethrough fluidly connecting a supply port, a return port and a control port formed in the housing; a moveable valve spool located within the channel and arranged to regulate flow of fluid between the supply port, the return port and the control port in response to a control signal; and a drive assembly configured to axially move the valve spool relative to the fluid transfer assembly in response to the control signal to regulate the fluid flow. The valve spool comprises a first spool part and a second spool part and the drive assembly comprises a piezoelectric actuator positioned between the first and the second spool parts within the channel. Then when a control signal is applied to the piezoelectric actuator it causes extension or contraction of the first and second piezoelectric actuator elements.
Opening claim text (preview).
The invention claimed is: 1 . A servovalve comprising: a fluid transfer valve assembly comprising a housing having channel therethrough fluidly connecting a supply port, a return port and a control port formed in the housing; a moveable valve spool located within the channel that regulates flow of fluid between the supply port, the return port and the control port in response to a control signal, wherein the moveable valve spool comprises a first spool part and a second spool part; and a drive assembly that moves the valve spool relative to the fluid transfer assembly in response to the control signal to regulate the fluid flow, the drive assembly comprising: a piezoelectric actuator positioned between the first and the second spool parts within the channel, the piezoelectric actuator comprising a first piezoelectric actuator element having a first end around which the first spool part is mounted and a second piezoelectric actuator element having a first end around which the second spool part is mounted, and each of the first and the second piezoelectric actuator elements having a second end, the second ends of the first and second piezoelectric actuator elements being connected to each other wherein application of the control signal to the piezoelectric actuator causes extension or contraction of the first and second piezoelectric actuator elements according to the polarity of the signal applied to each of the elements and causes corresponding movement of the respective spool parts; a first nozzle fluidly connecting the supply port and the channel of the housing; and a second nozzle fluidly connecting the return port and the channel of the housing, wherein expansion and contraction of the first and second piezoelectric actuator elements axial moves the respective first and second spool parts relative to the first and second nozzles to cover or expose the respective nozzles; wherein the second end of the first piezoelectric actuator element is attached to the second end of the second piezoelectric actuator element by means of a connector element; wherein the connector element is connected to an adjustment plate that is configured to can be moved relative to the ends of the housing to establish a neutral position of the spool parts. 2 . The servovalve of claim 1 , wherein the connector element is attached to the adjustor plate via a spool adjustment plate located in a channel through the housing. 3 . A method of controlling fluid flow through a servovalve as claimed in claim 1 , the method comprising: a control signal to the first and second piezoelectric actuator elements, whereby the polarity of the signal applied to each of the piezoelectric actuator elements determines the contraction or expansion of the piezoelectric actuator element and, thereby, the axial movement of the spool parts in the housing. 4 . The servovalve of claim 1 , wherein the housing includes: a first end closed by a first end cap and a second end closed by a second end cap; a top cover located between the first and second ends; and a bottom located between the first and second ends on a side of the housing opposite the top cover; wherein the supply port, the return port and the control port are formed in the housing from the channel to the bottom of the housing; wherein the first and second end caps are removably attached to the housing by fasteners. 5 . The servovalve of claim 1 , wherein the control signal is applied via a first power conductor electrically connected to the first piezoelectric actuator element through the housing and a second power conductor electrically connected to the second piezoelectric actuator element through the housing. 6 . The servovalve of claim 5 , wherein each of the first and second power conductor passes through an insulative plug in the housing. 7 . The servovalve of claim 4 , wherein seals are provided between the end caps and the housing. 8 . The servovalve of claim 1 , wherein seals are provided at the supply port, return port and control port. 9 . The servovalve of claim 1 , wherein each of the first and the second spool parts are part is attached to the respective piezoelectric actuator element by shrink fit.
actuated by piezoelectric means · CPC title
with an actuating member for each valve, e.g. interconnected to form multiple-way valves · CPC title
for linearly sliding valves, e.g. spool valves · CPC title
for sliding valves · CPC title
Calibrating · CPC title
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