HIGH INTEGRITY ROTARY ACTUATOR AND METHOD OF OPERATION
An actuator for an aircraft is provided. The actuator comprises a first motor, a second motor and an actuator output, which are interconnected by a gear assembly. The actuator output is driveable by the first motor independently of the second motor; the actuator output is driveable by the second motor independently of the first motor; and the actuator output is driveable by the first and second motors in combination.
1 . An actuator for an aircraft, the actuator comprising:
a first motor, a second motor and an actuator output, which are interconnected by a gear assembly, wherein the actuator output is driveable by the first motor independently of the second motor, wherein the actuator output is driveable by the second motor independently of the first motor; and wherein the actuator output is driveable by the first and second motors in combination.
2 . The actuator according to claim 1 , wherein the first and second motors comprise respective electric motors.
3 . The actuator according to claim 1 , wherein the first and second motors comprise respective hydraulic motors.
4 . The actuator according to claim 1 , wherein at least one of the first and second motors comprises an electric motor and at least one of the first and second motors comprises a hydraulic motor.
5 . The actuator according to claim 1 , wherein the first motor is connected to the gear assembly via a harmonic drive.
6 . The actuator according to claim 1 , wherein the second motor is connected to the gear assembly via a harmonic drive.
7 . The actuator according to claim 1 , wherein the gear assembly comprises an epicyclic gear assembly comprising an outer ring gear drivingly connected to a set of planetary gears and a planet carrier, which are drivingly connected to a sun gear.
8 . The actuator according to claim 7 , wherein the first motor is disposed in driving connection with the planet carrier.
9 . The actuator according to claim 7 , wherein the second motor is disposed in driving connection with the outer ring gear.
10 . The actuator according to claim 7 , wherein the actuator output is disposed in driving connection with the sun gear.
11 . The actuator according to claim 7 , wherein the first motor is disposed in driving connection with the sun gear, the second motor is disposed in driving connection with the outer ring gear and the actuator output is disposed in driving connection with the planet carrier.
12 . The actuator according to claim 7 , wherein the first motor is disposed in driving connection with the planet carrier, the second motor is disposed in driving connection with the sun gear and the actuator output is disposed in driving connection with the outer ring gear.
13 . A landing gear system comprising an actuator according to claim 1 .
14 . An aircraft flap or aileron control system comprising an actuator according to claim 1 .
15 . A method of operating an actuator comprising a first motor, a second motor and an actuator output, which are interconnected by a gear assembly, the method comprising:
operating the first motor to drive the actuator output;
operating the second motor to drive the actuator output in the event of a fault with the first motor; and
operating the first and second motors in combination to drive the actuator output in the event of a fault with the gear assembly that interconnects the first and second motors.
16 . The method according to claim 15 , wherein during normal operation of the actuator, the first and second motors are operated alternately.