Fluid accelerator
US-2024286756-A1 · Aug 29, 2024 · US
US9726149B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9726149-B2 |
| Application number | US-201113008203-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 18, 2011 |
| Priority date | Jan 18, 2011 |
| Publication date | Aug 8, 2017 |
| Grant date | Aug 8, 2017 |
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A ram air turbine (RAT) assembly includes a gearbox that supports a gear set with a ring gear that drives a pinion gear. The gear set provides for the transmission of power from the turbine to a generator, pump or other power conversion device. A turbine shaft supports the ring gear and a pinion shaft that rotates about an axis transverse to the turbine shaft supports the pinion gear. A ratio between a face width and a diametrical pitch of the gear set is within a desired ratio that provides sufficient space for supporting bearing assemblies while providing for operation within the physical constraints and desired performance requirements of the RAT.
Opening claim text (preview).
What is claimed is: 1. A gear set for a ram air turbine, the gear set comprising: a ring gear supported on a drive shaft driven by a turbine; a pinion gear driven by the ring gear, the pinion gear driving a pinion shaft, wherein each of the ring gear and the pinion gear include a diametrical pitch and a face width with a ratio between the diametrical pitch and the face width for both the ring gear and the pinion gear being within a range between 11.48 and 11.85 and wherein a ratio of a distance between a pitch apex and pinion gear crown and a distance between the pitch apex and a ring gear crown is within a range between 1.34 and 1.60. 2. The gear set for the ram air turbine as recited in claim 1 , wherein each of the ring gear and the pinion gear comprise spiral bevel gears. 3. The gear set for the ram air turbine as recited in claim 2 , wherein a spiral angle of gear teeth on each of the ring gear and the pinion gear is related to an angle between the drive shaft and the pinion shaft according to a ratio within a range between 0.377 and 0.498. 4. The gear set for the ram air turbine as recited in claim 1 , wherein a ratio of a number of teeth disposed on the ring gear and a number of teeth on the pinion gear is approximately 2. 5. The gear set for the ram air turbine as recited in claim 1 , wherein a ratio of a pitch diameter of the pinion gear and a pitch diameter of the ring gear is between 0.41 and 0.50. 6. The gear set for the ram air turbine as recited in claim 1 , wherein a ratio between a mounting distance from a front surface of the ring gear and a pitch apex and a mounting distance between a stop surface of the pinion gear is approximately 1.65. 7. The gear set for the ram air turbine as recited in claim 1 , including a first bearing assembly for supporting rotation of the pinion gear disposed forward of the pinion gear and a second bearing supporting rotation of the pinion gear disposed rearward of the pinion gear, wherein the first bearing assembly is disposed at least partially within a distance between one of a pinion gear crown and a ring gear crown and a pitch apex of the gear set. 8. A ram air turbine assembly comprising a turbine driving a drive shaft; a gearbox supporting the drive shaft and a pinion shaft; a ring gear supported within the gearbox on the drive shaft; and a pinion gear supported within the gearbox on the pinion shaft, wherein each of the ring gear and the pinion gear include a diametrical pitch and a face width with a ratio between the diametrical pitch and the face width for both the ring gear and the pinion gear being within a range between 11.48 and 11.85 and wherein a ratio of a length between a pitch apex and a pinion gear crown parallel to an axis of rotation of the pinion gear and a length between the pitch apex and a ring gear crown parallel to an axis of rotation of the ring gear is within a range between 1.34 and 1.60. 9. The ram air turbine assembly as recited in claim 8 , wherein the pinion gear and the ring gear comprise spiral bevel gears. 10. The ram air turbine assembly as recited in claim 8 , wherein a ratio of a number of teeth disposed on the ring gear and a number of teeth on the pinion gear is approximately 2. 11. A method of installing a gear set within the ram air turbine assembly comprising the steps of: mounting a pinion gear within a gearbox of a ram air turbine assembly; and mounting a ring gear in meshing engagement with the pinion gear within the gearbox, wherein each of the ring gear and the pinion gear include a diametrical pitch and a face width with a ratio between the diametrical pitch and the face width for both the ring gear and the pinion gear being within a range between 11.48 and 11.85 and a ratio of a length between a pitch apex and a pinion gear crown parallel to an axis of rotation of the pinion gear and a length between the pitch apex and a ring gear crown parallel to an axis of rotation of the ring gear is within a range between 1.34 and 1.60. 12. The method of installing the gear set within the ram air turbine assembly as recited in claim 11 , including mounting the ring gear to a drive shaft driven by a turbine, and supporting the pinion gear on a first bearing assembly disposed forward of the pinion gear and a second bearing disposed rearward of the pinion gear, wherein the first bearing assembly is disposed at least partially within a distance between one of a pinion gear crown and a ring gear crown and a pitch apex of the gear set. 13. The method of installing the gear set within the ram air turbine assembly as recited in claim 12 , including mounting the pinion gear about an axis of rotation relative to an axis of rotation of the drive shaft at an angle between 70 and 73 degrees. 14. The method of installing the gear set within the ram air turbine assembly as recited in claim 11 , wherein each of the ring gear and the pinion gear comprise spiral bevel gears.
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as in toothed gearing · CPC title
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