Fuel conditioning system and method configured to supply an aircraft turbine engine with fuel from a cryogenic tank
US-12162621-B2 · Dec 10, 2024 · US
US9617919B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9617919-B2 |
| Application number | US-201514974626-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 18, 2015 |
| Priority date | Aug 10, 2012 |
| Publication date | Apr 11, 2017 |
| Grant date | Apr 11, 2017 |
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A valve includes a valve housing having a fluid inlet and a fluid outlet with a longitudinal axis defined through the valve housing. The valve also includes a toggle mechanism configured and adapted to cycle flow from the fluid inlet to the fluid outlet through a plurality of different flow rates in response to repeated impulses. The toggle mechanism is also configured to hold flow rate steady between impulses.
Opening claim text (preview).
What is claimed is: 1. A valve comprising: a valve housing including a fluid inlet and a fluid outlet with a longitudinal axis defined through the valve housing; an armature mounted within the valve housing for movement relative to the valve housing along the longitudinal axis; a pintle mounted within the valve housing with an interior flow passage defined in the pintle in fluid communication with the fluid inlet of the valve housing, and a pintle outlet for selective fluid communication between the interior flow passage of the pintle and the fluid outlet of the valve housing, wherein the pintle and armature are configured and adapted so that repeated impulse actuation of the armature along the longitudinal axis cycles the pintle between first and second rotational positions corresponding to first and second flow rates for fluid communication from the interior flow passage of the pintle to the fluid outlet of the valve housing; and first and second flow circuits defined in the fluid outlet of the valve housing for staging of flow between the first and second flow circuits, wherein in the first rotational position of the pintle, the interior flow passage of the pintle is in fluid communication with the first flow circuit, and wherein in the second rotational position of the pintle, the interior flow passage of the pintle is in fluid communication with the second flow circuit, wherein a portion of the first and second flow circuits is defined in the armature. 2. A valve as recited in claim 1 , wherein in the first rotational position, fluid communication from the interior flow passage of the pintle to the fluid outlet of the valve housing is blocked for a zero flow rate, and wherein in the second rotational position, the interior flow passage of the pintle is in fluid communication with the fluid outlet of the valve housing. 3. A valve as recited in claim 1 , wherein in the second rotational position of the pintle, the interior flow passage of the pintle is in fluid communication with both of the first and second flow circuits. 4. A valve as recited in claim 1 , wherein the armature and pintle fit together with a liquid tight clearance for separation of the first and second flow circuits. 5. A valve comprising: a valve housing including a fluid inlet and a fluid outlet with a longitudinal axis defined through the valve housing; an armature mounted within the valve housing for movement relative to the valve housing along the longitudinal axis; a pintle mounted within the valve housing with an interior flow passage defined in the pintle in fluid communication with the fluid inlet of the valve housing, and a pintle outlet for selective fluid communication between the interior flow passage of the pintle and the fluid outlet of the valve housing, wherein the pintle and armature are configured and adapted so that repeated impulse actuation of the armature along the longitudinal axis cycles the pintle between first and second rotational positions corresponding to first and second flow rates for fluid communication from the interior flow passage of the pintle to the fluid outlet of the valve housing; and first and second flow circuits defined in the fluid outlet of the valve housing for staging of flow between the first and second flow circuits, wherein in the first rotational position of the pintle, the interior flow passage of the pintle is in fluid communication with the first flow circuit but not the second flow circuit, and wherein in the second rotational position of the pintle, the interior flow passage of the pintle is in fluid communication with both the first flow circuit and second flow circuit, wherein a portion of the first and second flow circuits is defined in the armature. 6. A valve as recited in claim 5 , wherein in the first rotational position, fluid communication from the interior flow passage of the pintle to the fluid outlet of the valve housing is blocked for a zero flow rate, and wherein in the second rotational position, the interior flow passage of the pintle is in fluid communication with the fluid outlet of the valve housing. 7. A valve as recited in claim 5 , wherein in the second rotational position of the pintle, the interior flow passage of the pintle is in fluid communication with both of the first and second flow circuits. 8. A valve as recited in claim 5 , wherein a portion of the first and second flow circuits is defined in the armature. 9. A valve as recited in claim 5 , wherein the armature and pintle fit together with a liquid tight clearance for separation of the first and second flow circuits.
Structural details of the armature · CPC title
Armature and valve member being one single element · CPC title
the fluid passing through the solenoid coil · CPC title
Lift valves · CPC title
for rotating valves · CPC title
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