Claims
- 1. An apparatus for damping vibration of a flap of a variable area jet engine nozzle, said apparatus comprising:
- (a) at least one pivot joint interconnecting said flap and said nozzle, said joint comprising biasing means applying a predetermined force to said flap so as to generate a frictional damping force between said joint and said flap during movement of said flap about said joint; and
- (b) wherein said biasing means comprises spring means; and
- (c) wherein said flap comprises a mounting lug pivotally connected to said joint;
- (d) a hinge pin passing through said mounting lug to connect said flap to said nozzle;
- (e) bearing means for supporting said hinge pin within said joint; and
- (f) wherein said joint further comprises a mounting bracket attached to said nozzle with at least one support arm wherein said support arm includes a square bore, said bearing means comprises a first journal bearing and a second journal bearing, and wherein at least said first journal bearing includes a square outer surface which fits within said square bore and which causes said first journal bearing to be non-rotatably fixed to said pivot joint.
- 2. The apparatus of claim 1, wherein said first journal bearing is slidably mounted over said hinge pin.
- 3. The apparatus of claim 2, wherein said first journal bearing directly applies said predetermined force to said mounting lug.
- 4. An apparatus for damping vibration of a flap of a variable area jet engine nozzle, said apparatus comprising:
- (a) at least one pivot joint interconnecting said flap and said nozzle, said joint comprising biasing means applying a predetermined force to said flap so as to generate a frictional damping force between said joint and said flap during movement of said flap about said joint; and
- (b) linear guide means operatively associated with said joint for allowing combined rotation and linear translation of said flap about said joint and wherein said rotation occurs about a first axis and wherein said linear translation occurs along a second axis which is not parallel to said first axis.
- 5. The apparatus of claim 4, further comprising sliding engagement means for transferring said predetermined force from said biasing means to said flap wherein said sliding engagement means includes a slider block with a rectangular planar contact area, for improved wear resistance, which slideably engages a slot during engine operation.
- 6. An apparatus for damping vibration of a flap of a variable area jet engine nozzle, said apparatus comprising:
- (a) at least one pivot joint interconnecting said flap and said nozzle, said joint comprising biasing means applying a predetermined force to said flap so as to generate a frictional damping force between said joint and said flap during movement of said flap about said joint; and
- (b) means operatively associated with said joint for setting said predetermined force, wherein:
- (i) said means for setting comprises a limiting means;
- (ii) said limiting means comprises a canister which includes a tubular member, a first retaining ring, and a second retaining ring with said tubular member spaced therebetween said first and said second retaining rings;
- (iii) said biasing means comprises a spring retained within said canister; and
- (iv) said tubular member is dimensioned such that its length is less than the free length of said spring, thereby limiting the compression of said spring.
- 7. A pivot joint for applying a vibration damping frictional force to a pivoting lug of a flap of a variable area jet engine nozzle, said joint comprising:
- a mounting bracket;
- at least one support arm provided on said mounting bracket;
- a bearing slidably supported by said at least one support arm;
- a pivot pin pivotally connecting said at least one support arm to said pivoting lug;
- and biasing means operatively associated with said pivot joint for biasing said bearing toward said lug for generating said frictional force.
- 8. The joint of claim 7 further comprising guide means and a slider block located between said lug and said bearing and engaging within said guide means wherein said guide means is operatively associated with said joint for allowing combined rotation and linear translation of said nozzle flap lug about said joint wherein said rotation occurs about a first axis and wherein said linear translation occurs along a second axis which is not parallel to said first axis.
- 9. The joint of claim 8, wherein said guide means comprises a lug formed with an elongated guide surface for engaging said slider block which includes a rectangular planar contact area, wherein said planar contact area provides a surface with improved wear resistance, relative to that of a cylindrical surface, thereby enhancing the useful life of said joint.
- 10. A pivot joint for applying a vibration damping frictional force to a pivoting lug, said joint comprising:
- a mounting bracket;
- at least one support arm provided on said mounting bracket;
- a bearing slideably supported by said at least one support arm;
- a pivot pin pivotally connecting said at least one support arm to said pivoting lug;
- biasing means operatively associated with said pivot joint for biasing said bearing toward said lug for generating said frictional force;
- said at least one support arm comprises a first support arm and a second support arm each connected to said mounting bracket so as to form a clevis.
Government Interests
The Government has rights in this invention pursuant to Contract No. F33657-84-C-0264 awarded by the Department of Air Force.
US Referenced Citations (17)
Foreign Referenced Citations (8)
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