IP Library Granted Patent US 9,540,095
Granted Patent B2
US 9,540,095 · App. 14/495,680 · Granted Jan 10, 2017

Aerodynamic surface drive mechanism

Inventors: Clóvis Augusto Eça Ferreira (São José dos Campos, BR); Israel Da Silva (São José dos Campos, BR)
Assignee: EMBRAER S.A.
B64C13/28B64C9/02B64C9/16Y02T50/32Y02T50/44
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Quick Facts
Patent No.
US 9,540,095
App. No.
14/495,680
Granted
Jan 10, 2017
Kind
B2
Abstract

There is described an aerodynamic surface drive mechanism ( 20 ) containing at least a drive combination ( 50, 50 ′), each drive combination ( 50, 50 ′) comprising a fixed element ( 21 ) associated to a fixed aircraft structure and a first mobile component ( 22 ) connected pivotably by a first end to the fixed element ( 21 ) by way of an articulation axis (E) and associated to an actuator ( 30 ) by an opposite end, the aerodynamic surface drive mechanism ( 20 ) further comprises a second mobile component ( 23 ) rotationally associated to the first mobile component ( 22 ) by way of primary swivel joints ( 24, 24 ′) linearly disposed along a vertical axis (Y) and rotationally connected to the aerodynamic surface ( 40 ) by way of secondary swivel joints ( 25, 25 ′) linearly disposed along a horizontal axis (Z); the first mobile component ( 22 ) and the second mobile component ( 23 ) simultaneously moving the aerodynamic surface ( 40 ) linearly and rotatively by means of the actuator ( 30 ) and of the primary swivel joints ( 24, 24 ′) and secondary swivel joints ( 25, 25 ′).

Claims (22)

1. An aircraft comprising:

an aerodynamic surface which is moveable between stowed and deployed conditions relative to fixed aircraft structure, and

a drive mechanism connected operatively to the aerodynamic surface to drive the aerodynamic surface between the stowed and deployed conditions thereof, wherein the drive mechanism comprises:

(i) a fixed element having an attachment end, the fixed element being immovably associated with the fixed aircraft structure;

(ii) a first mobile component having first and second opposed ends, wherein the first mobile component is connected pivotally to an attachment end to the fixed element by way of an articulation axis;

(iii) an actuator which is operable to move between extended and retracted positions, the actuator being connected pivotally to the second end of the first mobile component;

(iv) a T-shaped second mobile component having a substantially horizontal cap piece defining a substantially horizontal axis and a substantially vertical tail piece fixed to and extending downwardly from the cap piece defining a substantially vertical axis perpendicular to the substantially horizontal axis;

(v) primary swivel joints rotationally connecting the first mobile component to the tail piece of the second mobile component, the primary swivel joints being linearly aligned along the substantially vertical axis to allow pivotal movements of the second mobile component relative to the first mobile component about the substantially vertical axis;

(vi) secondary swivel joints rotationally connecting the cap piece of the second mobile component to the aerodynamic surface, the secondary swivel joints being linearly aligned along the substantially horizontal axis to allow pivotal movements of the second mobile component relative to the aerodynamic surface about the substantially horizontal axis; wherein

the first mobile component and the second mobile component simultaneously move the aerodynamic surface linearly and rotationally in response to the actuator moving between the retracted and extended positions thereof due to the pivotal interconnections of the primary and secondary swivel joints allowing simultaneous pivotal movements of the second mobile component about the substantially vertical axis and the substantially horizontal axis, respectively.

2. The aircraft as claimed in claim 1 , wherein the aerodynamic surface comprises fore and aft articulation structures fixed to and extending downwardly from a lower face thereof, wherein the fore and aft articulate structures include a respective one of the secondary swivel joints connected to the cap piece of the second mobile component.

3. The aircraft as claimed in claim 1 , wherein the aerodynamic surface is moveable between the stowed and deployed conditions in a direction that is substantially parallel to flight direction of the aircraft.

4. The aircraft as claimed in claim 3 , wherein the aerodynamic surface comprises a flap that is moveable between stowed and deployed conditions relative to a fixed wing of the aircraft.

5. A drive mechanism for driving a moveable aerodynamic surface relative to a fixed aerodynamic surface of an aircraft, the drive mechanism comprising:

a first mobile component having first and second opposed ends, wherein the first mobile component is connectable pivotally at the first end thereof to fixed structure of the fixed aerodynamic surface of the aircraft to permit pivotal movement of the first mobile component about an articulation axis;

an actuator connected pivotally to the second end of the first mobile component and operable to pivotally move the first mobile component about the articulation axis between extended and retracted positions thereof;

a second mobile component comprised of a T-shaped structure having a substantially horizontal cap piece which defines a substantially horizontal axis and a substantially vertical tail piece fixed to and extending downwardly from the cap piece which defines a substantially vertical axis perpendicular to the substantially horizontal axis;

a pair of primary swivel joints rotationally connecting the first mobile component to the tail piece of the second mobile component, the pair of primary swivel joints being linearly aligned along the substantially vertical axis to allow pivotal movements of the second mobile component relative to the first mobile component about the substantially vertical axis;

a pair of secondary swivel joints rotationally connecting the cap piece of the second mobile component to the aerodynamic surface, the secondary swivel joints being linearly aligned along the substantially horizontal axis to allow pivotal movements of the second mobile component relative to the aerodynamic surface about the substantially horizontal axis; wherein

the first mobile component and the second mobile component simultaneously move the aerodynamic surface linearly and rotationally in response to the actuator moving between the retracted and extended positions thereof due to the pivotal interconnections of the primary and secondary swivel joints allowing simultaneous pivotal movements of the second mobile component about the substantially vertical and horizontal axes, respectively.

6. The drive mechanism as claimed in claim 5 , wherein the aerodynamic surface comprises fore and aft articulation structures fixed to and extending downwardly from a lower face thereof, wherein the fore and aft articulate structures include a respective one of the secondary swivel joints connected to the cap piece of the second mobile component.

7. An aircraft comprising a fixed wing and an aerodynamic flap moveable between stowed and deployed conditions relative to the fixed wing, wherein the aircraft further comprises a drive mechanism according to claim 5 for driving the aerodynamic flap between the stowed and deployed conditions thereof.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2015
From: FERREIRA, CLOVIS AUGUSTO ECA; DA SILVA, ISRAEL
To: EMBRAER S.A.
Reel/Frame 034811/0826 →
Priority Claims (1)
BR 102013024469 · Sep 24, 2013 · national
Continuity (1)
Related Publication 20150083854A1 · Mar 26, 2015