Variable pitch fan for gas turbine engine
A variable pitch fan assembly for an aero gas turbine engine that includes a row of fixed pitch blades in a core stream flow and a row of variable pitch blades in a bypass stream flow, and where a sync ring with a number of hydraulic actuators within a flow splitter of the fan stage is used to vary a pitch of each of the bypass stream flow blades. Hydraulic fluid lines pass through the shaft and through the fixed pitch fan blades into the hydraulic actuators to move the sync ring and vary a pitch of the variable pitch bypass flow fan blades.
1. An aero gas turbine engine comprising:
a compressor;
a combustor;
a gas turbine;
the compressor produces compressed air for the combustor to burn with a fuel and produce a hot gas stream to drive the gas turbine which drives the compressor;
a fan stage driven by the gas turbine;
the fan stage including a plurality of fixed fan blades, a flow splitter, and a plurality of variable pitch fan blades;
the flow splitter separating a core stream flow from a bypass stream flow;
the flow splitter including a sync ring and at least one actuator connected to each of the plurality of variable pitch fan blades to vary a pitch of the plurality of variable pitch fan blades.
2. The aero gas turbine engine of claim 1 , and further comprising:
each of the plurality of variable pitch fan blade includes a pivot arm extending from a bottom side that engages with a pivot pin secured to the sync ring.
3. The aero gas turbine engine of claim 1 , and further comprising:
the plurality of variable pitch fan blades are made from a light weight composite material.
4. The aero gas turbine engine of claim 1 , and further comprising:
the plurality of fixed pitch blades and the plurality of variable pitch blades have substantially the same spanwise height.
5. The aero gas turbine engine of claim 1 , and further comprising: the at least one actuator is a hydraulic actuator.
6. The aero gas turbine engine of claim 5 , and further comprising: one hydraulic actuator for every two of the plurality of variable pitch fan blades.
7. The aero gas turbine engine of claim 5 , and further comprising:
the hydraulic actuator is located in the flow splitter;
a first hydraulic fluid line extends through a first fixed inlet guide vane; and,
a second hydraulic fluid line extends through a second fixed inlet guide vane.
8. The aero gas turbine engine of claim 1 , and further comprising:
the at least one actuator is located in the flow splitter between two adjacent variable inlet guide vanes;
and, a control mechanism for the at least one actuator passes through one or both of a first and a second fixed inlet guide vane.