Actuator with passive locking

US10907712B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10907712-B2
Application numberUS-201716474926-A
CountryUS
Kind codeB2
Filing dateDec 26, 2017
Priority dateDec 30, 2016
Publication dateFeb 2, 2021
Grant dateFeb 2, 2021

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A lockable electromechanical actuator including: a screw extending along a longitudinal axis; a nut engaged on the screw and provided with means for connection to an element that is to be moved; and a passive locking device for locking the element that is to be moved in the retracted position; the passive locking device including a device for actuating a lock that can selectively adopt a first position in which the lock prevents relative turning between the screw and the nut, which would lead to the element that is to be moved being deployed, and a second position in which the nut is free to turn, the lock passing from one of its first and second positions to the other one of its first and second positions when the element that is to be moved is taken beyond its retracted position.

First claim

Opening claim text (preview).

The invention claimed is: 1. A lockable electromechanical actuator comprising: a body; a motor having its outlet shaft constrained to rotate with a screw extending along a longitudinal axis (Oy); a nut engaged on the screw and provided with connection means for connection to an element that is to be moved, the nut moving on the screw from a retracted first position of the nut to a deployed second position of the nut corresponding respectively to a retracted first position of the element that is to be moved and to a deployed second position of the element, that is to be moved; and a passive locking device for locking the element that is to be moved in the retracted position; the passive locking device comprising one of the means for actuating a lock being capable of selectively adopting a first position in which the lock prevents relative turning between the screw and the nut that would lead to the element that is to be moved being deployed and a second position in which relative rotation between the screw and the nut is free; and the passive locking device being arranged so that: when the lock is in its first position, the lock passes from the first position to the second position when the element that is to be moved is taken beyond its retracted position; and when the lock is in its second position, the lock passes from the second position to the first position when the element that is to be moved is taken beyond its retracted position. 2. The electromechanical actuator according to claim 1 , wherein the actuator means comprise movement conversion means arranged to convert movement of the element that is to be moved beyond its retracted first position into a movement in rotation suitable for causing the lock to pass from one of its first and second positions to the other one of its first and second positions. 3. The electromechanical actuator according to claim 2 , wherein the outlet shaft of the motor is provided with a pinion meshing with a ring having internal teeth, and the screw is constrained to turn with the ring; the passive locking device includes an abutment carried by the ring for the purpose of co-operating with the lock, and the lock is functionally connected to the nut, being arranged to prevent turning of the ring when the lock is in its first position; the movement conversion means comprise a rod slidably mounted in a central housing of the screw extending along the longitudinal axis (Oy), the rod being functionally connected to the element that is to be moved so as to pass from a retracted first position of the rod to a deployed second position of the rod when the element that is to be moved is taken beyond its retracted position; the movement conversion means also comprise a lever pivotally mounted on the body, the lever having a first end arranged to be actuated by the rod when it passes into its deployed second position; and the second end of the lever is arranged to move a second bushing slidably mounted on a first shaft that is constrained to turn with the lock. 4. The electromechanical actuator according to claim 2 , wherein the outlet shaft of the motor is provided with a pinion meshing with a ring having internal teeth, and the screw is constrained to turn with the ring, the passive locking device includes an abutment carried by the ring for the purpose of co-operating with the lock, and the lock is functionally connected to the nut being arranged to prevent turning of the ring when the lock is in its first position; the movement conversion means slidably mounted in a central housing of the extending along the longitudinal axis (Oy), the rod being functionally connected to the element that is to be moved so as to pass from a retracted first position of the rod to a deployed second position of the rod when the element, that is to be moved is taken beyond its retracted position; and the movement conversion means being arranged to convert a movement of the element that is to be moved beyond its retracted position into a turning movement of the rod. 5. The electromechanical actuator according to claim 3 , wherein the movement conversion means also comprise a plunger rotatably mounted on the first shaft and having a first end of the plunger that co-operates with a first end of a cam body connected to the first shaft by a slideway type connection, the outer face of the plunger including at least one groove co-operating with a stop secured with the second bushing, the movement conversion means also comprising first return means for returning the second bushing into position, together with thrust means for thrusting the cam body so as to bring the first end of the cam body against the first end of the plunger. 6. The electromechanical actuator according to claim 3 , wherein the first shaft has a groove extending helically along the first shaft, the second bushing being secured to a first cylindrical ferrule provided with a follower for co-operating with the groove and a keeper arranged in such a manner that: movement of the second bushing on the first shaft in a first travel direction causes the first shaft to turn relative to the second bushing; and movement of the second bushing on the first shaft in a second travel direction opposite to the first travel direction does not cause any turning of the first shaft relative to the second bushing. 7. The electromechanical actuator according to claim 4 , wherein the slideway type connection comprises a pin extending through a longitudinal opening in the first shaft. 8. The electromechanical actuator according to claim 5 , wherein the first return means of the second bushing and/or the means for thrusting the cam body comprise a helical spring. 9. The electromechanical actuator according to claim 3 , wherein the central housing extends over the entire length of the screw, the rod having a first end projecting from a first end of the screw. 10. The electromechanical actuator according to claim 3 , wherein the central housing is blind, and wherein the rod has a first portion extending in a bore passing through the screw in a direction that is substantially orthogonal to the longitudinal axis, the first portion of the rod being connected to a first bushing slidably mounted on the screw to slide along the longitudinal axis (Oy). 11. The electromechanical actuator according to claim 3 , comprising return means for returning the rod to its retracted first position. 12. The electromechanical actuator according to claim 3 , comprising first return means for returning the second bushing in position. 13. The electromechanical actuator according to claim 6 , wherein the follower and the groove are arranged in such a manner that movement of the second bushing on the first shaft in the first sliding direction causes the first shaft to turn through 90° relative to the second bushing. 14. The electromechanical actuator according to claim 6 , wherein the follower and the groove are arranged in such a manner as to cause the lock to pass selectively from one of its first and second positions to the other one of its first and second positions when the first shaft turns through 180°. 15. The electromechanical actuator according to claim 4 , wherein the rod is functionally constrained in rotation with a pinion of gearing driving a drive wheel having at least one finger for co-operating with a slot of a driven wheel of the Maltese cross type, the driven wheel being constrained to rotate with the lock. 16. The electromechanical actuator according to claim 15 , wherein the driven wheel has four slots and the drive wheel has two fingers.

Assignees

Inventors

Classifications

  • with blocking systems or locking devices; Arrangement of locking devices for thrust reversers · CPC title

  • Brakes; Rotational locks · CPC title

  • Efficient propulsion technologies, e.g. for aircraft · CPC title

  • Elements essential to such mechanisms, e.g. screws, nuts (F16H25/22 takes precedence) · CPC title

  • Screw mechanisms (with automatic reversal F16H25/12) · CPC title

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What does patent US10907712B2 cover?
A lockable electromechanical actuator including: a screw extending along a longitudinal axis; a nut engaged on the screw and provided with means for connection to an element that is to be moved; and a passive locking device for locking the element that is to be moved in the retracted position; the passive locking device including a device for actuating a lock that can selectively adopt a first …
Who is the assignee on this patent?
Safran Electronics & Defense
What technology area does this patent fall under?
Primary CPC classification F16H25/2454. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Feb 02 2021 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 4 related publications on this page (citations in our corpus or others sharing the same primary CPC).