Blade seal for an aircraft

5913494
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Inventors

Burbridge, Thomas Edward
Tomko, Harvey John
Wille, Robert Henry

Application #

900634

Filed

Jul-25-1997

Published

Jun-22-1999

Current US Class

244/130
244/213
277/644
277/651
277/652

International Classes

B64C 003/58; B64C 001/38; F16J 015/00

Field of Search

244/213 244/214 244/215 244/219 244/130 277/651 277/652 277/644 277/640

Assignee

McDonnell Douglas ()

Examiners

Jordan; Charles T.

Attorney, Agent or Firm

Halling; Dale B.

US Patent References

4471925   Apparatus for closi...
5222699   Variable control air...
5794893   Elastomeric transiti...
5839698   Control surface con...

Referenced by:

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Citation

Cite This Patent

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Abstract
A blade seal (20) for an aircraft has a mounting structure (22). A composite blade (26) is attached to the mounting structure (22). The composite blade (26) has a plurality of holes (28). An elastomer substance (30) is used to fill the plurality of holes (28).
 
Claims
What is claimed is:

1. A blade seal for an aircraft comprising:

a mounting structure;

a composite blade attached to the mounting structure, the composite blade having a plurality of holes; and

an elastomer substance filling the plurality of holes.

2. The blade seal of claim 1, wherein the mounting structure is made from a composite.

3. The blade seal of claim 1, wherein the plurality of holes are strips.

4. The blade seal of claim 3, wherein the strips run perpendicular to the mounting structure.

5. The blade seal of claim 1, wherein the mounting structure is attached to the aircraft adjacent to a control surface.

6. The blade seal of claim 1, wherein the composite blade had a wedge shape.



Description
FIELD OF THE INVENTION

The present invention relates generally to the field of aircraft and more particularly to a blade seal for an aircraft.

BACKGROUND OF THE INVENTION

All aircraft employ control surfaces on the wings, tail or fuselage. These control surfaces take the form of ailerons, leading edge flaps, rudders, elevators and others. These control surfaces are pivoted to provide a control moment. Gaps form between the control surface and the aircraft, when the control surface is pivoted. These gaps allow aerodynamic spillage reducing the effectiveness of the control surface. Present aircraft use preformed composite blade seals, that are placed over the hingeline edge of the control surface to reduce the aerodynamic spillage. The blade seals are preformed to have sufficient preload to keep against the control surfaces during flight operations. As the control surface is pivoted against the composite blade seal, the seal is bent to conform to the control surface. Unfortunately, present blade seals can be very stiff requiring significant actuation force by the control surface to bend. This problem is particularly acute where the moldline of the aircraft curves in the area of the hingeline.
 
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