Flow control systems having movable slotted plates
US-11180242-B2 · Nov 23, 2021 · US
US12098776B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12098776-B2 |
| Application number | US-202318225054-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 21, 2023 |
| Priority date | Jan 21, 2022 |
| Publication date | Sep 24, 2024 |
| Grant date | Sep 24, 2024 |
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In accordance with at least one aspect of this disclosure, a flow control device can include, a first plate having one or more windows defining a flow path therethrough, a second plate configured to abut the first plate, and an actuator operatively connected to one or more of the first plate and/or the second plate. The actuator can be configured to drive the first plate and/or the second plate relative to one another to enlarge or reduce the flow path through the one or more windows in the first plate.
Opening claim text (preview).
What is claimed is: 1. A flow control device, comprising: a first plate having one or more windows defining a flow path therethrough; a second plate configured to abut the first plate and the second plate having a face; and an actuator operatively connected to one or more of the first plate and/or the second plate, configured to drive the first plate and/or the second plate relative to one another to enlarge or reduce the flow path through the one or more windows in the first plate, wherein the second plate includes one or more protrusions smaller than the face of the second plate and configured to align with and insert into and through the one or more windows of the first plate, wherein in a closed state, the one or more protrusions are configured to block the flow path through the one or more windows in the first plate. 2. The flow control device of claim 1 , wherein the actuator is operatively connected to the second plate to drive the second plate relative to the first plate, parallel to the flow path, to enlarge or reduce the flow path through the one or more windows in the first plate and around the one or more protrusions in the second plate. 3. The flow control device of claim 2 , wherein the first plate is stationary relative to the second plate. 4. The flow control device of claim 1 , wherein a curtain area of the flow control device is determined as a function of a number of windows in the first plate. 5. The flow control device of claim 1 , wherein the actuator includes a piezoelectric actuator. 6. The flow control device of claim 5 , wherein the piezoelectric actuator is configured to actuate a mechanical advantage device, wherein the mechanical advantage device is operatively connected to the first plate or the second plate to drive the first plate or second plate. 7. The flow control device of claim 1 , wherein the first plate and the second plate form a poppet flow control device. 8. A flow control system, comprising: a fluid source configured to provide fluid to a fluid destination via a fluid line; the flow control device of claim 1 disposed in the fluid line configured to control flow from the fluid source to the fluid destination, wherein total flow through the flow control device is controlled as a function of a number of the one or more windows in the first plate. 9. The system of claim 8 , wherein the actuator is operatively connected to the second plate to drive the second plate relative to the first plate, parallel to the flow path, to enlarge or reduce the flow path through the one or more windows in the first plate and around the one or more protrusions in the second plate. 10. The system of claim 8 , wherein the actuator includes a piezoelectric actuator. 11. The flow control device of claim 8 , wherein the first plate and the second plate form a poppet flow control device. 12. A method comprising: controlling, with a piezoelectric actuator, a flow control device disposed in a fluid system, wherein controlling includes, driving one or more of a first plate which includes one or more windows and/or a second plate which includes a face of the flow control device to allow flow to pass through the one or more windows in the first plate and through or more windows in the second plate or around one or more protrusions in the second plate, the one or more protrusions smaller than the face of the second plate and configured to align with, and insert into and through the one or more windows of the first plate. 13. The method of claim 12 , wherein the second plate includes one or more protrusions configured to align with and insert into the one or more windows of the first plate, wherein in a closed state, the one or more protrusions are configured to block the flow path through the one or more windows in the first plate. 14. The method of claim 12 , wherein the piezoelectric actuator is operatively connected to the second plate to drive the second plate relative to the first plate, parallel to the flow path, to enlarge or reduce the flow path through the one or more windows in the first plate and around the one or more protrusions in the second plate. 15. The method of claim 12 , wherein the piezoelectric actuator is configured to actuate a mechanical advantage device, wherein the mechanical advantage device is operatively connected to the first plate or the second plate to drive the first plate or second plate. 16. The flow control device of claim 12 , wherein the first plate and the second plate form a poppet flow control device.
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