Claims
- 1. A torque transfer assembly adapted for use in an epicyclic gear train, the gear train including a sun gear rotatable about an axially extending central axis, a concentric outer ring gear, and a plurality of gears mechanically intermediate said sun gear and said ring gear and in meshing engagement therewith, said plurality of gears being adapted for receiving torque input from said sun gear, said torque transfer assembly comprising:
an epicyclic carrier, rotatable about said. axially extending central axis and adapted to rotatably support said plurality of gears on a plurality of axles between first and second axle ends, said first and second, axle ends defining first and second planes respectively, said plurality of axles being parallel to said central axis and said first and second planes being perpendicular to said central axis, said plurality of gears being circumferentially located on the epicyclic carrier about said central axis, said epicyclic carrier having a first connecting member extending therefrom; and a torque transfer coupling adapter, disposed concentrically with said epicyclic carrier and rotatable therewith, said torque transfer coupling adapter having a central torque output element and a second connecting member extending therefrom, said second connecting member being adapted to be engaged with said first connecting member to structurally join said coupling adapter and said epicyclic carrier, said first and second connecting members being structurally joined together between said first and second planes.
- 2. The torque transfer assembly as defined in claim 1, wherein said epicyclic gear train is a planetary gear set, and said epicyclic carrier is a planetary carrier and said plurality of gears are planet gears.
- 3. The torque transfer assembly as defined in claim 1, wherein said torque transfer coupling adapter is removably engaged with said epicyclic carrier.
- 4. The torque assembly device as defined in claim 1, wherein the first and second connecting members engage one another at a midpoint between said first and second planes.
- 5. The torque transfer assembly as defined in claim 1, wherein said torque transfer coupling adapter and said epicyclic carrier are engaged together only at said first and second connecting members.
- 6. The torque transfer assembly as defined in claim 1, wherein said first connecting member comprises a plurality of first connecting elements and wherein said second connecting member comprises an equal number of second connecting elements.
- 7. The torque transfer assembly as defined in claim 6, wherein said second connecting elements are leg elements extending from said central torque output element of said torque transfer coupling adapter, and wherein said first connecting elements comprise a plurality of mounting locations adapted to receive said leg elements.
- 8. The torque transfer assembly as defined in claim 7, wherein said leg elements are disposed intermediate adjacent gears of said plurality of gears.
- 9. The torque transfer assembly as defined in claim 1, wherein said central torque output element of said torque transfer coupling adapter comprises gear teeth adapted for meshed engagement with a driven output.
- 10. The torque transfer assembly as defined in claim 9, wherein said driven output is a propeller shaft.
- 11. The torque transfer assembly as defined in claim 9, wherein said driven output is an input spline for a subsequent stage of said epicyclic gear train.
- 12. The torque transfer assembly as defined in claim 3, wherein said torque transfer coupling adapter and said planetary carrier are engaged by fasteners.
- 13. The torque transfer assembly as defined in claim 12, wherein said fasteners are radially disposed outwardly of individual axis of rotation of said plurality of gears.
- 14. The torque transfer assembly as defined in claim 1, wherein said first and second connecting members are integral with one another.
- 15. An epicyclic carrier assembly adapted for use in an epicyclic gear train, said gear train including a sun gear rotatable about a central axis, a concentric outer ring gear, and a plurality of gears circumferentially spaced relative to, and mechanically intermediate of, said sun gear and said ring gear and in meshing engagement therewith, said plurality of gears being adapted for receiving torque input from said sun gear, said planetary carrier assembly comprising:
a split gear carrier, comprising a first half and a second half for rotatably supporting respective first and second ends of a plurality of axles of said plurality of gears, said plurality of axles being parallel to said central axis, said plurality of gears being circumferentially located about said central axis and axially disposed between said first and second halves of said split gear carrier, each of said first and second halves having a corresponding first attachment member; and a carrier support torque frame disposed concentrically with said central axis and axially located between said first half and said second half of said split gear carrier, said carrier support torque frame having an annular mounting flange adapted for fixed engagement with an outer housing and comprising a second attachment member, said second attachment member being mounted to said first attachment members to structurally connect said first and second halves of said split gear carrier to said carrier support torque frame, said first and second attachment members being mounted to one another in a plane between said first and second ends of said plurality of axles of said plurality of gears.
- 16. The epicyclic carrier assembly as defined in claim 15, wherein said epicyclic gear train is a star gear set, and said epicyclic carrier assembly is a star carrier assembly and said plurality of gears are star gears.
- 17. The epicyclic carrier assembly as defined in claim 15, wherein said outer ring gear is rotatable about said central axis and is adapted for providing torque output from said plurality of gears, said epicyclic carrier assembly being rotatably fixed.
- 18. An epicyclic carrier assembly adapted for use in an epicyclic gear train, said epicyclic gear train including a sun gear rotatable about a central axis, a concentric outer ring gear, and a plurality of gears circumferentially spaced relative to, and mechanically intermediate of, said sun gear and said ring gear and in meshing engagement therewith, said plurality of gears being adapted for receiving torque input from said sun gear, said epicyclic carrier assembly comprising:
a gear support member, concentric with said central axis, and adapted to rotatably support said plurality of gears on a plurality of axles between first and second axle ends, said plurality of axles being parallel to said central axis, said plurality of gears being circumferentially located on said epicyclic carrier about said central axis, said gear support member having at least a first connecting member; and a coupling adapter disposed concentrically with said gear support member, said coupling adapter having and a second connecting member, said second connecting member being engaged with said first connecting member to structurally join said coupling adapter and said gear support member, said first and second connecting members being mounted to one another in a plane between said first and second axle ends.
- 19. The epicyclic carrier assembly as defined in claim 18, wherein said gear support member is rotatable about said central axis and said outer ring gear is fixed relative to a surrounding housing.
- 20. The epicyclic carrier assembly as defined in claim 19, wherein said coupling adapter comprises a torque transfer member that is rotatable with the gear support member and includes a central torque output element comprising a splined portion, said splined portion being adapted for engagement with a driven output.
- 21. The epicyclic carrier assembly as defined in claim 20, wherein said epicyclic gear train is a planetary gear set, said epicyclic carrier is a planetary carrier and said plurality of gears are planet gears.
- 22. The epicyclic carrier assembly as defined in claim 20, wherein said driven output is a propeller shaft.
- 23. The epicyclic carrier assembly as defined in claim 18, wherein said outer ring gear is rotatable about said central axis and provides torque output from said plurality of gears, said coupling adapter being fixed relative to a surrounding housing.
- 24. The epicyclic carrier assembly as defined in claim 23, wherein said coupling adapter is an annular support flange having a splined portion on an outer diameter thereof, said splined portion being adapted for fixed engagement with a surrounding housing.
- 25. The epicyclic carrier assembly as defined in claim 23, wherein said epicyclic gear train is a star gear set, and said epicyclic carrier assembly is a star carrier assembly and said plurality of gears are star gears.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 10/017,152, filed by Poulin et al on Dec. 14, 2001.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
10017152 |
Dec 2001 |
US |
Child |
10318220 |
Dec 2002 |
US |