Valve assembly and method of controlling flow of fluid
US-2016363228-A1 · Dec 15, 2016 · US
US9709177B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9709177-B2 |
| Application number | US-201514595581-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 13, 2015 |
| Priority date | Jan 13, 2015 |
| Publication date | Jul 18, 2017 |
| Grant date | Jul 18, 2017 |
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.
A two-position, two-stage servo valve includes a valve body, a valve element, a control pressure chamber, and a control element. The valve body has an inner surface that defines a valve element chamber that includes a first control chamber and a second control chamber. The first control chamber is larger than the second control chamber. The valve element has first and second ends and is disposed within the valve element chamber and is movable between a first valve position and a second valve position. The first end is larger than the second end and is disposed within the first control chamber, and the second end is disposed within the second control chamber. The control pressure chamber includes a control pressure port that is in continuous fluid communication with the first control chamber. The control element is movable between a first control position and a second control position.
Opening claim text (preview).
What is claimed is: 1. A two-position, two-stage servo valve, comprising: a valve body having an inner surface that defines a valve element chamber, the valve element chamber including a first control chamber, a second control chamber, and a third control chamber, the first control chamber larger than the second control chamber, the third control chamber located between the first control chamber and the second control chamber; a valve element disposed within the valve element chamber and movable between a first valve position and a second valve position, the valve element including a first end, a second end, and an intermediate face, the first end larger than the second end and disposed within the first control chamber, the second end disposed within the second control chamber, the intermediate face located between the first end and the second end and disposed within the third control chamber; a control pressure chamber including a supply pressure port, a return pressure port, and a control pressure port, the control pressure port in continuous fluid communication with the first control chamber, the return pressure port in continuous fluid communication with the third control chamber; and a control element at least partially disposed within the control pressure chamber and movable between a first control position and a second control position, wherein: the first end of the valve element has a first area, the second end of the valve element has a second area, and the intermediate face has an annular area, the first area is larger than a sum of the second area and the annular area, when the control element is in the first control position, the supply pressure port is in fluid communication with the control pressure port and the return pressure port is fluidly isolated from the control pressure port, and when the control element is in the second position, the return pressure port is in fluid communication with the control pressure port and the supply pressure port is fluidly isolated from the control pressure port. 2. The valve of claim 1 , wherein: the supply pressure port is continuously in fluid communication with the second control chamber. 3. The valve of claim 1 , wherein: the valve body includes a supply pressure inlet port, a return pressure outlet port, a first control pressure inlet/outlet port, and a second control pressure inlet/outlet port; the supply pressure inlet port is in continuous fluid communication with the supply pressure port and the second control chamber; the return pressure outlet port is in continuous fluid communication with the return pressure port; the first control pressure inlet/outlet port is in fluid communication with the return pressure outlet port when the valve element is in the first valve position, and is in fluid communication with the supply pressure inlet port when the valve element is in the second valve position; and the second control pressure inlet/outlet port is in fluid communication with the supply pressure outlet port when the valve element is in the first valve position, and is in fluid communication with the return pressure outlet port when the valve element is in the second valve position. 4. The valve of claim 3 , wherein the valve element has an internal channel formed therein that provides continuous fluid communication between the supply pressure inlet port and the second control chamber. 5. The valve of claim 1 , wherein the control element comprises a torque motor. 6. The valve of claim 5 , wherein the torque motor comprises: a plurality of coils adapted to be controllably energized; an armature/flapper rotationally mounted proximate the coils and extending into the control pressure chamber, the armature/flapper configured, in response to the coils being energized, to rotate between the first control position and the second control position. 7. A two-position, two-stage servo valve, comprising: a valve body having an inner surface that defines a valve element chamber, the valve element chamber including a first control chamber, a second control chamber, and a third control chamber, the first control chamber larger than the second control chamber, the third control chamber located between the first control chamber and the second control chamber; a valve element disposed within the valve element chamber and movable between a first valve position and a second valve position, the valve element including a first end, a second end, and an intermediate face, the first end larger than the second end and disposed within the first control chamber, the second end disposed within the second control chamber, the intermediate face located between the first end and the second end and disposed within the third control chamber; a control pressure chamber including a supply pressure port, a return pressure port, and a control pressure port, the supply pressure port adapted to fluidly communicate with a supply pressure, the return pressure port adapted to fluidly communicate with a return pressure that is less than the supply pressure, the control pressure port in continuous fluid communication with the first control chamber, the return pressure port in continuous fluid communication with the third control chamber; and a control element at least partially disposed within the control pressure chamber and movable between a first control position and a second control position, wherein: the first end of the valve element has a first area, the second end of the valve element has a second area, and the intermediate face has an annular area, the first area is larger than a sum of the second area and the annular area, when the control element is in the first control position, the control pressure port is in fluid communication with the supply pressure port and the first control chamber, and is fluidly isolated from the return pressure port, and when the control element is in the second position, the control pressure port is in fluid communication with the return pressure port and the first control chamber, and is fluidly isolated from the supply pressure port. 8. The valve of claim 7 , wherein: the supply pressure port is continuously in fluid communication with the second control chamber. 9. The valve of claim 7 , wherein: the valve body includes a supply pressure inlet port, a return pressure outlet port, a first control pressure inlet/outlet port, and a second control pressure inlet/outlet port; the supply pressure inlet port is in continuous fluid communication with the supply pressure port and the second control chamber; the return pressure outlet port is in continuous fluid communication with the return pressure port; the first control pressure inlet/outlet port is in fluid communication with the return pressure outlet port when the valve element is in the first valve position, and is in fluid communication with the supply pressure outlet port when the valve element is in the second valve position; and the second control pressure inlet/outlet port is in fluid communication with the supply pressure outlet port when the valve element is in the first valve position, and is in fluid communication with the return pressure inlet port when the valve element is in the second valve position. 10. The valve of claim 9 , wherein the valve element has an internal channel formed therein that provides continuous fluid communication between the supply pressure inlet port and the second control chamber. 11. A two-position, two-stage servo valve, comprising: a control pressure chamber including a supply pressure port, a return pressure port, and a control pressure port; a control element at least partially disposed within the control pre
With internal flow passage · CPC title
the pilot valves being of the nozzle-flapper type · CPC title
the actuated valves being cylindrical sliding valves · CPC title
With annular passage [e.g., spool] · CPC title
characterised by mechanical means between the motor and the valve, e.g. lost motion means reducing backlash, clutches, brakes or return means · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.