IP Library › Granted Patent US 8,418,574
Granted Patent B2
US 8,418,574 · App. 12/016,373 · Granted Apr 16, 2013

Linear actuator

Inventors: Timothy Mark Stephen Myers (Newcastle Upon Tyne, GB); Francis Russell Watson (Derby, GB)
Assignee: Rolls-Royce PLC
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Quick Facts
Patent No.
US 8,418,574
App. No.
12/016,373
Granted
Apr 16, 2013
Kind
B2
Abstract

A combined linear and rotary actuator has a shaft with a screw thread, a nut engaging the screw thread and engaging means movable between a first location where rotation of the turning mechanism produces substantially linear displacement of the shaft, and a second location where rotation of the turning mechanism produces substantially rotary displacement of the shaft. The linear actuator finds particular use on retractable marine propulsor such as used on submarines and the like.

Claims (43)

1. A linear actuator comprising:

a shaft having a thread;

a rotatable turning mechanism engaging the thread; and

an engaging means movable between a first position where rotation of the turning mechanism produces substantially linear displacement of the shaft, and a second position where rotation of the turning mechanism produces substantially rotary displacement of the shaft,

wherein the engaging means further comprises

a sleeve extending around the shaft and having a slot that extends parallel to the shaft, and having a limit stop outside the slot, and

a pin mounted to the shaft, and

wherein when the pin abuts against the limit stop, the engaging means prevents rotation of the shaft in a first direction and permits rotation of the shaft in the opposite direction.

2. A linear actuator according to claim 1 , wherein the rotatable turning mechanism is connected to the sleeve through a thrust bearing.

3. A linear actuator according to claim 2 , wherein the rotatable turning mechanism comprises a nut rotatable by a motor.

4. A linear actuator according to claim 3 , wherein the motor is a rim driven motor and the nut is a rotor in the rim driven motor.

5. A linear actuator according to claim 1 , wherein the pin and the slot form a lock device that has a first configuration where rotation of the turning mechanism produces substantially linear displacement of the shaft relative to the sleeve and a second configuration where rotation of the turning mechanism produces substantially rotary displacement of the shaft relative to the sleeve.

6. A linear actuator according to claim 5 , wherein the lock device has a pin or roller that engages a slot in the first configuration.

7. A linear actuator according to claim 6 , wherein the pin is fixed to and moves with the shaft in both the first and second configurations.

8. A linear actuator according to claim 5 , wherein there is a predetermined friction between the turning mechanism and the thread and the lock device provides resistance between the sleeve and the shaft, the resistance provided by the lock device when in the first configuration being greater than the predetermined friction and the resistance provided by the lock device in the second configuration being less than the predetermined friction.

9. A linear actuator comprising:

a shaft having a thread;

a rotatable turning mechanism engaging the thread; and

an engaging means movable between a first position where rotation of the turning mechanism produces substantially linear displacement of the shaft, and a second position where rotation of the turning mechanism produces substantially rotary displacement of the shaft,

wherein the shaft further comprises a travel limiter, which limits the maximum linear displacement of the shaft,

wherein the rotatable turning mechanism comprises a nut rotatable by a motor,

wherein the motor is a rim driven motor and the nut is a rotor in the rim driven motor.

10. A linear actuator according to claim 9 , wherein the nut has a plurality of circumferentially arranged magnets.

11. A linear actuator according to claim 9 , wherein the rotatable turning mechanism is connected to a sleeve through a thrust bearing.

12. A linear actuator according to claim 11 , the actuator having a lock device that has a first configuration where rotation of the turning mechanism produces substantially linear displacement of the shaft relative to the sleeve and a second configuration where rotation of the turning mechanism produces substantially rotary displacement of the shaft relative to the sleeve.

13. A linear actuator according to claim 12 , wherein the lock device has a pin or roller that engages a slot in the first configuration.

14. A linear actuator according to claim 13 , wherein the pin is fixed to and moves with the shaft in both the first and second configurations.

15. A linear actuator according to claim 12 , wherein there is a predetermined friction between the turning mechanism and the thread and the lock device provides resistance between the sleeve and the shaft, the resistance provided by the lock device when in the first configuration being greater than the predetermined friction and the resistance provided by the lock device in the second configuration being less than the predetermined friction.

16. A linear actuator according to claim 9 , wherein the shaft is hollow and contains cables to supply electrical power to the propulsion means.

17. A linear actuator comprising:

a shaft having a thread;

a rotatable turning mechanism engaging the thread; and

an engaging means movable between a first position where rotation of the turning mechanism produces substantially linear displacement of the shaft, and a second position where rotation of the turning mechanism produces substantially rotary displacement of the shaft,

wherein propulsion means are mounted to the shaft,

wherein the propulsion means is a rim driven azimuthing thruster.

18. A linear actuator according to claim 17 , wherein the rotatable turning mechanism is connected to a sleeve through a thrust bearing.

19. A linear actuator according to claim 18 , the actuator having a lock device that has a first configuration where rotation of the turning mechanism produces substantially linear displacement of the shaft relative to the sleeve and a second configuration where rotation of the turning mechanism produces substantially rotary displacement of the shaft relative to the sleeve.

20. A linear actuator according to claim 19 , wherein the lock device has a pin or roller that engages a slot in the first configuration.

21. A linear actuator according to claim 20 , wherein the pin is fixed to and moves with the shaft in both the first and second configurations.

22. A linear actuator according to claim 19 , wherein there is a predetermined friction between the turning mechanism and the thread and the lock device provides resistance between the sleeve and the shaft, the resistance provided by the lock device when in the first configuration being greater than the predetermined friction and the resistance provided by the lock device in the second configuration being less than the predetermined friction.

23. A linear actuator according to claim 17 , wherein the rotatable turning mechanism comprises a nut rotatable by a motor.

24. A linear actuator according to claim 23 , wherein the motor is a rim driven motor and the nut is a rotor in the rim driven motor.

25. A linear actuator according to claim 17 , wherein the shaft is hollow and contains cables to supply electrical power to the propulsion means.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 18, 2008
From: MYERS, TIMOTHY MARK STEPHEN; WATSON, FRANCIS RUSSELL
To: ROLLS-ROYCE PLC
Reel/Frame 020384/0485 →
Priority Claims (1)
GB 0702791.5 · Feb 14, 2007 · national
Continuity (1)
Related Publication 20080190227A1 · Aug 14, 2008