Transfer bearing for geared turbofan
A gear reduction for a gas turbine engine comprises a carrier driven to rotate gears. The gears are supported by journal bearings. The carrier extends through a transfer bearing, which provides oil to passages within the carrier to supply oil to the gears and to the journal bearings. A device limits leakage oil from the transfer bearing to axial ends of the transfer bearing to a controlled amount. A gas turbine engine is also disclosed.
1. A gear reduction for a gas turbine engine comprising:
a carrier driven to rotate with gears, said gears being supported by journal bearings;
said carrier extending through a transfer bearing, said transfer bearing providing oil to passages within said carrier to supply oil to said gears and to said journal bearings;
a device to limit leakage oil from said transfer bearing to axial ends of said transfer bearing to a controlled, non-zero, amount; and
said device to limit leakage includes piston ring seals.
2. The gear reduction as set forth in claim 1 , wherein said device to limit leakage oil includes a supply of pressurized air to said ends.
3. The gear reduction as set forth in claim 2 , wherein said device to limit leakage oil includes a labyrinth seal at each axial end of said transfer bearing, with said pressurized air supplied on an opposed side of said labyrinth seal from said axial ends.
4. The gear reduction as set forth in claim 3 , wherein said transfer bearing is static.
5. The gear reduction as set forth in claim 1 , wherein said transfer bearing is static.
6. The gear reduction as set forth in claim 1 , wherein said gears are planet gears.
7. A gear reduction for a gas turbine engine comprising:
a carrier driven to rotate with gears, said gears being supported by journal bearings;
said carrier extending through a transfer bearing, said transfer bearing providing oil to passages within said carrier to supply oil to said gears and to said journal bearings;
a device to limit leakage oil from said transfer bearing to axial ends of said transfer bearing to a controlled, non-zero, amount; and
said device to limit leakage includes a carbon gap seal providing a controlled leakage gap between an inner periphery of said carbon gap seal and an outer periphery of said carrier.
8. A gas turbine engine comprising:
a fan drive turbine driving a fan rotor through a gear reduction;
the gear reduction including a carrier driven to rotate with gears, said gears being supported by journal bearings; and
said carrier extending through a transfer bearing, said transfer bearing providing oil to passages within said carrier to supply oil to said gears and to said journal bearings, and a device to limit leakage oil from said transfer bearing to axial ends of said transfer bearing to a controlled, non-zero, amount; and
said device to limit leakage includes piston ring seals.
9. The gas turbine engine as set forth in claim 8 , wherein said device to limit leakage oil includes a supply of pressurized air to said ends.
10. The gas turbine engine as set forth in claim 9 , wherein said device to limit leakage oil includes a labyrinth seal at each axial end of said transfer bearing.
11. The gas turbine engine as set forth in claim 10 , wherein said transfer bearing is static.
12. The gas turbine engine set forth in claim 9 , wherein said device to limit leakage oil also includes piston ring seals.
13. The gas turbine engine as set forth in claim 8 , wherein the fan drive turbine also driving a compressor, with said gear reduction being placed between said compressor and said fan rotor.
14. The gas turbine engine as set forth in claim 8 , wherein said transfer bearing is static.
15. A gas turbine engine comprising:
a fan drive turbine driving a fan rotor through a gear reduction;
the gear reduction including a carrier driven to rotate with gears, said gears being supported by journal bearings;
said carrier extending through a transfer bearing, said transfer bearing providing oil to passages within said carrier to supply oil to said gears and to said journal bearings, and a device to non-zero, amount; and
said device to limit leakage includes a carbon gap seal providing a controlled leakage gap between an inner periphery of said carbon gap seal and an outer periphery of said carrier.