Hybrid brake system
US-12179912-B2 · Dec 31, 2024 · US
US10240651B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10240651-B2 |
| Application number | US-201313921791-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 19, 2013 |
| Priority date | Jun 25, 2012 |
| Publication date | Mar 26, 2019 |
| Grant date | Mar 26, 2019 |
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Official abstract text for this publication.
The invention provides a method of unblocking an aircraft wheel brake having at least one electromechanical actuator 5 with at least one electric motor and a pusher 10 movable under drive from the motor facing friction elements 8 of the brake in order to apply a braking force selectively against the friction elements 8 , the actuator 5 being provided with a blocking member 12 for blocking the pusher in position, at least after the actuator has been operated to apply a parking brake force. According to the invention, the unblocking method comprises the steps of: connecting an external control unit to the brake, the external control unit being adapted to act at least on the blocking member 12 of the actuator; and using the external control unit to cause the blocking member 12 to unblock the pusher.
Opening claim text (preview).
The invention claimed is: 1. A method of unblocking an aircraft wheel brake performed by an operator on the ground, the brake having at least one electromechanical actuator ( 5 ) with at least one electric motor and a pusher ( 10 ) movable under drive from the motor facing friction elements ( 8 ) of the brake in order to apply a braking force selectively against the friction elements ( 8 ), the actuator ( 5 ) being provided with a blocking member ( 12 ) for blocking the pusher ( 10 ) in position, at least after the actuator has been operated to apply a parking brake force, the unblocking method being characterized in that it comprises the steps of: the operator on the ground bringing an external control unit ( 25 ) to the proximity of the wheel in such a way that the operator on the ground can connect the external control unit ( 25 ) to the brake, connecting the external control unit ( 25 ) to the brake, the external control unit being adapted to act at least on the blocking member ( 12 ) of the actuator; and using the external control unit ( 25 ) to cause the blocking member ( 12 ) to unblock the pusher ( 10 ), the blocking member ( 12 ) having power supplied exclusively by the external control unit ( 25 ). 2. An unblocking method according to claim 1 , wherein the control unit ( 25 ) is also adapted to act on the motor of the actuator to move the pusher ( 10 ), the method including a step of using the external control unit ( 25 ) to cause the pusher ( 10 ) to reverse. 3. An unblocking method according to claim 1 , including, in addition to the above-mentioned steps: an initial step consisting in disconnecting from the brake an electrical cable bundle ( 17 ) extending along the landing gear so as to enable the external control unit ( 25 ) to be connected to the brake instead of the electrical cable bundle ( 17 ); and a final step consisting in disconnecting the external control unit ( 25 ) and in reconnecting the electrical cable bundle ( 17 ) to the brake. 4. An unblocking method according to claim 1 , wherein the external control unit ( 25 ) has a source of electrical energy ( 28 ) suitable for powering the brake while it is being controlled by the external control unit ( 25 ). 5. An unblocking method according to claim 1 , wherein the external control unit ( 25 ) is connected directly to the brake. 6. An external control unit ( 25 ) separate from an aircraft and configured for being brought into the proximity of an aircraft wheel by an operator on the ground in order to control a brake of the wheel, the brake including at least one electromechanical actuator ( 5 ) with at least one electric motor and a pusher ( 10 ) movable under drive from motor facing friction elements ( 8 ) of the brake in order to apply a braking force selectively against the friction elements ( 8 ), the actuator being provided with a blocking member ( 12 ) for blocking the pusher ( 10 ) in position, at least after the actuator has been operated to apply a parking brake force, the unit ( 25 ) comprising: at least one electrical energy source ( 28 ), brake connection means ( 26 , 27 ) for connection of the unit to the brake, and control means ( 29 ) powered by the energy source ( 28 ) and adapted to act at least on the blocking member ( 12 ) of the brake via the brake connection means in order to unblock the pusher ( 10 ), wherein the blocking member ( 12 ) has power supplied exclusively by the external control unit ( 25 ).
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