IP Library Granted Patent US 7,175,132
Granted Patent B2
US 7,175,132 · App. 11/027,834 · Granted Feb 13, 2007

Mechanism for eliminating limit cycle oscillations on servocontrolled aerodynamic control surfaces

Assignee: Airbus Espana, S.L.
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Quick Facts
Patent No.
US 7,175,132
App. No.
11/027,834
Granted
Feb 13, 2007
Kind
B2
Abstract

Servocontrolled aerodynamic control surfaces, such as the direction rudder ( 1 ) of an airplane, are equipped with servoactuators ( 5 ). The bearing supports ( 3 ) of the rotation axis ( 2 ) or hinged axis give rise to the formation of free play for the manufacturing tolerances, that will be more pronounced with the wear of the bearings or joint elements. The mechanism ( 8 ) in question includes an elastic element ( 10 ) fixed to the structure ( 4 ) wherein the control surface ( 1 ) is jointed, connected rigidly to an articulated connecting rod ( 12 ) having a following roller ( 13 ) of a cam ( 9 ) integral to the control surface ( 1 ). The cam ( 9 ) profile produces a continuous nonlinear, angular deformation, of the elastic element in order to determine a force torque on the control surface ( 1 ) that is maximum in the neutral position of the control surface and manages to be eliminated in the extreme side deviations.

Claims (13)

1. Mechanism for eliminating limit cycle oscillations for servocontrolled aerodynamic control surfaces fixed to a structure, equipped with servoactuators and whose supports of the rotation axis or the hinged axis, determine free play due to the manufacturing tolerances and the wear of the bearings or joint elements, wherein said mechanism for eliminating limit cycle oscillations comprises

an elastic element, spring or torsion bar, fixed to the structure wherein the control surface is jointed,

an articulated rod rigidly connected to a free end of the elastic element, said articulated rod comprising a roller at a free end thereof

a cam integral to the control surface,

being the roller of the rod a following roller of the cam, in such a way that the following roller permanently contacts the cam, and deviations of the control surface together with the profile of the cam produce continuous nonlinear angular deformation of the elastic element, defining said angular deformation a force torque on the control surface, that reduces when the deviations of the control surface increase, being “0” for positive and negative deviations of the control surface that exceed a pre-established angular value.

2. Mechanism for eliminating limit cycle oscillations according to claim 1 wherein the elastic element is fixed to the structure by means of a disk, being the joining of the elastic element to the disk accomplished by means of an anchoring point having a square section.

3. Mechanism for eliminating limit cycle oscillations according to claim 1 , wherein the elastic element is connected to the articulated rod by means of a support bearing and the angular deformation of the elastic element is controlled by said support bearing.

4. Mechanism for eliminating limit cycle oscillations according to claim 2 , wherein the elastic element is connected to the articulated rod by means of a support bearing and the angular deformation of the elastic element is controlled by said support bearing.

5. Arrangement of a servocontrolled aerodynamic control surface fixed to a structure, equipped with servoactuators and whose supports of the rotation axis or the hinged axis, determine free play due to the manufacturing tolerances and the wear of the bearings or joint elements, wherein said arrangement of a control surface comprises a mechanism for eliminating limit cycle oscillations, said mechanism for eliminating limit cycle oscillations comprising:

an elastic element, spring or torsion bar, fixed to the structure wherein the control surface is jointed,

an articulated rod rigidly connected to a free end of the elastic element, said articulated rod comprising a roller at a free end thereof, and

a cam integral to the control surface,

being the roller of the rod a following roller of the cam, in such a way that the following roller permanently contacts the cam, and deviations of the control surface together with the profile of the cam produce continuous nonlinear angular deformation of the elastic element, defining said angular deformation a force torque on the control surface, that reduces when the deviations of the control surface increase, being “0” for positive and negative deviations of the control surface that exceed a pre-established angular value.

Assignments (2)
CHANGE OF NAME Recorded Jan 11, 2010
From: AIRBUS ESPANA, S.L.
To: AIRBUS OPERATIONS, S.L.
Reel/Frame 023768/0562 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 16, 2005
From: VILLATA MORENO, ALVARO
To: AIRBUS ESPANA, S.L.
Reel/Frame 016276/0916 →
Priority Claims (1)
ES 200303084 · Dec 31, 2003 · national
Continuity (1)
Related Publication 20050178897A1 · Aug 18, 2005