Aircraft engine
A gas turbine engine for an aircraft has an engine core having a turbine, compressor, and core shaft connecting the turbine and compressor; a fan upstream the engine core, the fan having fan blades; and a gearbox. The gearbox receives an input from a core shaft and outputs drive to a fan to drive the fan at a lower rotational speed than the core shaft. The gearbox is an epicyclic gearbox and has a sun gear, planet gears, ring gear, and planet carrier on which the planet gears are mounted. The gearbox has a gear mesh stiffness between the planet gears and the ring gear and a gear mesh stiffness between the planet gears and the sun gear. The gear mesh stiffness between the planet gears and the ring gear divided by that between the planet gears and the sun gear is in the range from 0.90 to 1.28.
1. A gas turbine engine for an aircraft comprising:
an engine core comprising a turbine, a compressor, and a core shaft connecting the turbine to the compressor;
a fan located upstream of the engine core, the fan comprising a plurality of fan blades; and
a gearbox arranged to receive an input from the core shaft and to output drive to the fan so as to drive the fan at a lower rotational speed than the core shaft, the gearbox being an epicyclic gearbox comprising:
a sun gear, a plurality of planet gears, a ring gear, and a planet carrier on which the plurality of planet gears are mounted, the gearbox having a first gear mesh stiffness between the plurality of planet gears and the ring gear and a second gear mesh stiffness between the plurality of planet gears and the sun gear, and wherein:
a ring to sun mesh ratio of:
the
first
gear
mesh
stiffness
between
the
plurality
of
planet
gears
and
the
ring
gear
the
second
gear
mesh
stiffness
between
the
plurality
of
planet
gears
and
the
sun
gear
is in the range from 0.90 to 1.28.
2. The gas turbine engine of claim 1 wherein the ring to sun mesh ratio is in the range from 0.95 to 1.23.
3. The gas turbine engine of claim 1 wherein the gearbox has a gearbox diameter defined as the pitch circle diameter of the ring gear, and the gearbox diameter is in the range from 0.55 to 1.2 m.
4. The gas turbine engine of claim 1 wherein the first gear mesh stiffness between the plurality of planet gears and the ring gear is greater than or equal to 1.4×10 9 N/m and less than or equal to 2.0×10 10 N/m.
5. The gas turbine engine of claim 1 wherein the second gear mesh stiffness between the plurality of planet gears and the sun gear is greater than or equal to 1.20×10 9 N/m and less than or equal to 1.60×10 10 N/m.
6. The gas turbine engine of claim 1 , wherein either:
(i) the fan has a fan diameter in the range from 240 to 280 cm, and the ring to sun mesh ratio is in the range from 0.95 to 1.28; or
(ii) the fan has a fan diameter in the range from 330 to 380 cm, and the ring to sun mesh ratio is in the range from 0.90 to 1.23.
7. The gas turbine engine of claim 1 wherein the first gear mesh stiffness between the plurality of planet gears and the ring gear multiplied by the second gear mesh stiffness between the plurality of planet gears and the sun gear is greater than or equal to 4.7×10 18 N 2 m −2 and less than 1.5×10 19 N 2 m −2 .
8. The gas turbine engine of claim 1 wherein a torsional stiffness of the planet carrier is greater than 1.60×10 8 Nm/rad and less than 1.0×10 11 Nm/rad.
9. The gas turbine engine according to claim 1 , wherein the planet carrier comprises a forward plate and a rearward plate and pins extending therebetween, each pin being arranged to have a planet gear mounted on each pin between the forward plate and rearward plate.
10. The gas turbine engine according to claim 1 , wherein the gearbox comprises an odd number of planet gears.
11. The gas turbine engine according to claim 1 , wherein:
the turbine is a first turbine, the compressor is a first compressor, and the core shaft is a first core shaft;
the engine core further comprises a second turbine, a second compressor, and a second core shaft connecting the second turbine to the second compressor; and
the second turbine, a second compressor, and a second core shaft are arranged to rotate at a higher rotational speed than the first core shaft.
12. The gas turbine engine according to claim 1 , wherein the fan has a fan diameter greater than 240 cm and less than or equal to 380 cm.
13. The gas turbine engine of claim 1 , wherein the gas turbine engine comprises a fan shaft extending between the gearbox and the fan, and a gearbox support arranged to mount the gearbox within the gas turbine engine, the fan shaft, core shaft, the gearbox, and the gearbox support together forming a transmission, and wherein the effective linear torsional stiffness of the transmission is greater than or equal to 1.60×10 8 N/m and less than or equal to 8.2×10 8 N/m.