Claims
- 1. A fastener assembly for insertion into a throughhole of a multi-layered laminate to thereby fasten the laminate together, the throughhole having an inner surface and a length extending from a first outer surface of the laminate to a second outer surface of the laminate, the throughhole having a first width at the first outer surface, a second width at the second outer surface, and a third width at a point along the length of the throughhole between the first outer surface and the second outer surface, the third width being less than each of the first width and the second width, said fastener assembly comprising:
a substantially annular fastener device having an axial opening and a peripheral surface configured for substantially conforming to the inner surface of the throughhole; and an elongate element tightly received within said axial opening of said fastener device and configured for biasing said peripheral surface of said fastener device against the inner surface of the throughhole such that both said fastener device and said elongate element are substantially entirely disposed between the first outer surface and the second outer surface of the laminate.
- 2. The fastener assembly of claim 1, wherein said fastener device has a first axial surface configured for being substantially flush with the first outer surface of the laminate, said fastener device having a second axial surface configured for being substantially flush with the second outer surface of the laminate.
- 3. The fastener assembly of claim 2, wherein said axial opening of said fastener device comprises a through channel, said elongate element having a first axial surface configured for being substantially flush with each of the first outer surface of the laminate and said first axial surface of said fastener device, said elongate element having( a second axial surface configured for being substantially flush with each of the second outer surface of the laminate and said second axial surface of said fastener device.
- 4. The fastener assembly of claim 2, wherein said elongate element has a first axial end with a first width and a second axial end with a second width, said first width being substantially larger than said second width.
- 5. The fastener assembly of claim 4, wherein said fastener device has a first axial end with a first wall thickness and a second axial end with a second wall thickness, said second wall thickness being substantially larger than said first wall thickness, said first axial end of said fastener device being adjacent to said first axial end of said elongate element, said second axial end of said fastener device being adjacent to said second axial end of said elongate element.
- 6. The fastener assembly of claim 5, wherein said elongate element is threadedly coupled to said fastener device.
- 7. The fastener assembly of claim 6, wherein said second axial surface of said fastener device has at least one recess configured for receiving a manufacturing tool for holding said fastener device stationary while said elongate element is being screwed into said fastener device.
- 8. The fastener assembly of claim 5, wherein said elongate element and the first width, second width and third width of the throughhole conjointly define a means for preventing said fastening device from being moved out of the throughhole.
- 9. The fastener assembly of claim 1, wherein said fastener device comprises a blind fastener.
- 10. The fastener assembly of claim 1, wherein said elongate element comprises an expanding rod.
- 11. A method of fastening a multi-layered laminate together, said method comprising the steps of:
machining a throughhole in the laminate the throughhole having a length extending from a first outer surface of the laminate to a second outer surface of the laminate, the throughhole having a first width at the first outer surface, a second width at the second outer surface, and a third width at a point along the length of the throughhole between the first outer surface and the second outer surface, the third width being less than each of the first width and the second width; inserting a substantially annular fastener device into the throughhole through the second outer surface of the laminate such that a first axial end of said fastener device is adjacent to the first outer surface and a second axial end of said fastener device is adjacent to the second outer surface of the laminate, said first axial end of said fastener device having an axial opening; and placing an elongate element into said axial opening of said fastener device; biasing a peripheral surface of said fastener device against an inner surface of the throughhole in the laminate; and passing said elongate element through said axial opening until both said fastener device and said elongate element are substantially entirely disposed to one side of the first outer surface of the laminate.
- 12. The method of claim 11, wherein said machining step includes orbital hole machining.
- 13. The method of claim 11, wherein said passing step includes increasing a diameter of said fastener device.
- 14. The method of claim 11, wherein said axial opening of said fastener device comprises a through channel, said passing step including pulling said elongate element through said through channel.
- 15. The method of claim 14, comprising the further step of machining off an end of said elongate element such that a resulting machined surface of said elongate element is substantially flush with the second outer surface of the laminate.
- 16. The method of claim 11, comprising the further steps of:
providing said fastener device with a plurality of internal threads facing said axial opening; and providing said elongate element with a plurality of external threads;
wherein said passing step includes screwing said elongate element into said fastener device.
- 17. The method of claim 16, wherein said screwing step includes holding said fastener device stationary while rotating said elongate element.
- 18. The method of claim 17, comprising the further step of providing an axial face of said fastener device with at least one recess, said holding step including inserting a manufacturing tool into said at least one recess.
- 19. The method of claim 11, wherein said placing step occurs after said inserting step.
- 20. A method of fastening a laminate together, said method comprising the steps of:
machining a throughhole in the laminate such that a diameter of the throughhole increases at a substantially continually increasing rate from a first outer surface of the laminate to a second outer surface of the laminate; passing a fastener device into the throughhole through the second outer surface of the laminate; and coupling a biasing device to said fastener device; and exerting a force upon the first outer surface of the laminate using said biasing device and said fastener device to thereby bias said fastener device in the throughhole, said fastener device being substantially entirely disposed to one side of the second outer surface of the laminate.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The application is based upon U.S. provisional patent application serial No. 60/111,967, entitled “FASTENING CONCEPTS FOR INCREASED STRENGTH AND FATIGUE LIFE IN AIRCRAFT STRUCTURES”, filed Dec. 11, 1998, and U.S. provisional patent application serial No. 60/125,921, entitled “FASTENING CONCEPTS FOR INCREASED STRENGTH AND FATIGUE LIFE IN AIRCRAFT STRUCTURES, filed Mar. 23, 1999, the complete disclosures of which are hereby expressly incorporated by reference.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60111967 |
Dec 1998 |
US |
|
60125921 |
Mar 1999 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09458871 |
Dec 1999 |
US |
Child |
10124199 |
Apr 2002 |
US |