EP1817155A2

Flexible mandrel for highly contoured composite stringer and method of producing highly contoured composite stringer

Abstract

An aircraft stringer lay-up assembly is provided comprising a contoured curing block and a first mandrel element positioned thereon. The first mandrel assembly includes a first bar assembly having a plurality of rigidity reducing first slots formed along a first mandrel length. The plurality of rigidity reducing first slots protruding partially through a first mandrel depth of the first mandrel element to allow the first bar assembly to conform to the contoured curing block. A composite ply assembly is laid up onto the first mandrel element and cured while conformed to said contoured curing block such that a contoured composite stringer element is generated.

Term

Term ended

Projected expiry passed 4 November 2025, 0.9 years ago.

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43 claims: 43 independent, 0 dependent

  1. 1
    Claims of equivalent WO 2007001447 A2 What is claimed is:1. An aircraft stringer lay-up assembly comprising: a contoured curing block;a first mandrel element positioned on said contoured curing block, said first mandrel assembly including a first bar assembly having a plurality of rigidity reducing first slots formed along a first mandrel length, said plurality of rigidity reducing first slots protruding partially through a first mandrel depth of said first mandrel element to allow said first bar assembly to conform to said contoured curing block;and a composite ply assembly laid up onto said first mandrel element, said composite ply assembly cured onto said first mandrel element while conformed to said contoured curing block such that a contoured composite stringer element is generated.
  2. 2
    An aircraft stringer lay-up assembly as described in claim 1, wherein said first mandrel element comprises:an elongated beam.
  3. 3
    An aircraft stringer lay-up assembly as described in claim 1, wherein said plurality of rigidity reducing first slots comprise:a plurality of tapered slots including an open end and a tapered end, said open end positioned along a first mandrel vertical surface, said tapered end positioned along a first mandrel side surface.
  4. 4
    An aircraft stringer lay-up assembly as described in claim 1, wherein each of said plurality of rigidity reducing first slots comprises a wire electrical discharged machined slot.
  5. 5
    An aircraft stringer lay-up assembly as described in claim 4, wherein each of wire electrical discharged machined slots is less than 0.01 inch wide.
  6. 6
    An aircraft stringer lay-up assembly as described in claim 2, wherein said first mandrel element further comprises:a central bore chamber formed in said elongated beam along said first mandrel length;and a center support wire positioned through said central bore chamber, said center support wire controlling flexibility of said elongated beam.
  7. 7
    An aircraft stringer lay-up assembly as described in claim 1, wherein said contoured curing block is contoured across a first curing block planar direction and a second curing block planar direction such that twist is induced in said first mandrel element.
  8. 8
    An aircraft stringer lay-up assembly as described in claim 1, wherein said plurality of rigidity reducing slots comprise:a first group of rigidity reducing first slots positioned along a first mandrel upper vertical surface;and a second grouping of rigidity reducing slots positioned along a first mandrel lower vertical surface, said first group of rigidity reducing slots positioned remotely from said second grouping of rigidity reducing slots such that said first mandrel element may conform to said contoured curing block.
  9. 9
    An aircraft stringer lay-up assembly as described in claim 2, wherein said first mandrel element further comprises:a plurality of side positioning bores formed in said elongated beam.
  10. 10
    An aircraft stringer lay-up assembly as described in claim 1, further comprising:a vacuum bag assembly surrounding said contoured curing block, said first mandrel element, and said composite ply assembly, said vacuum bag assembly pressing said composite ply assembly against said first mandrel element during curing.
  11. 11
    An aircraft stringer lay-up assembly as described in claim 1, further comprising:a clamping assembly forcing said first mandrel element onto said contoured curing block.
  12. 12
    An aircraft stringer lay-up assembly as described in claim 1, further comprising:a second mandrel element positioned adjacent said first mandrel element on said contoured curing block, said second mandrel assembly including a plurality of rigidity reducing second slots formed along a second mandrel length, said plurality of rigidity reducing second slots protruding partially through a second mandrel depth of said second mandrel element to allow said second mandrel assembly to conform to said contoured curing block.
  13. 13
    An aircraft stringer lay-up assembly as described in claim 12, wherein said composite ply assembly is laid up between said first mandrel element and said second mandrel element, said composite ply assembly extending over a first mandrel upper vertical surface and a second mandrel upper vertical surface, said composite ply assembly extending over a first mandrel lower vertical surface and a second mandrel lower vertical surface such that said contoured composite stringer element comprises a contoured I-beam element.
  14. 14
    An aircraft stringer lay-up assembly comprising:a first mandrel element including a first elongated metal beam assembly having a plurality of rigidity reducing first elements formed along a first mandrel length, said plurality of rigidity reducing first elements allowing said first elongated metal beam assembly to be arranged in a complex contour;and a composite ply assembly laid up onto said first mandrel element, said composite ply assembly cured onto said first mandrel element while arranged in said complex contour such that a contoured composite stringer element is generated.
  15. 15
    An aircraft stringer lay-up assembly as described in claim 14, further comprising:a contoured curing block contoured across both a first curing block planar direction and a second curing block planar direction, said first mandrel element positioned on said contoured curing block to form said complex contour.
  16. 16
    An aircraft stringer lay-up assembly as described in claim 14, wherein said plurality of rigidity reducing first element comprise:a plurality of tapered slots including an open end and a tapered end, said open end positioned along a first mandrel vertical surface, said tapered end positioned along a first mandrel side surface.
  17. 17
    An aircraft stringer lay-up assembly as described in claim 15, wherein each of said plurality of rigidity reducing first elements comprises a wire electrical discharged machined slot.
  18. 18
    An aircraft stringer lay-up assembly as described in claim 17, wherein each of wire electrical discharged machined slots is less than 0.01 inch wide.
  19. 19
    An aircraft stringer lay-up assembly as described in claim 14, wherein said first mandrel element further comprises:a central bore chamber formed in said first elongated metal beam assembly along said first mandrel length;and a center support wire positioned through said central bore chamber, said center support wire controlling flexibility of said first elongated metal beam assembly.
  20. 20
    An aircraft stringer lay-up assembly as described in claim 14, wherein said plurality of rigidity reducing first elements comprise:a first group of rigidity reducing slots positioned along a first mandrel upper vertical surface;and a second grouping of rigidity reducing slots positioned along a first mandrel lower vertical surface, said first group of rigidity reducing slots positioned remotely from said second grouping of rigidity reducing slots such that said first mandrel element may conform to said contoured curing block.
  21. 21
    An aircraft stringer lay-up assembly as described in claim 14, wherein said plurality of rigidity reducing first elements allow twist to be induced in said first elongated metal beam assembly.
  22. 22
    An aircraft stringer lay-up assembly as described in claim 14, wherein said first mandrel element further comprises:a plurality of side positioning bores formed in said first elongated metal beam.
  23. 23
    An aircraft stringer lay-up assembly as described in claim 14, further comprising:a vacuum bag assembly surrounding said contoured curing block, said first mandrel element, and said composite ply assembly, said vacuum bag assembly pressing said composite ply assembly against said first mandrel element during curing.
  24. 24
    An aircraft stringer lay-up assembly as described in claim 14, further comprising:a clamping assembly forcing said first mandrel element onto said contoured curing block.
  25. 25
    An aircraft stringer lay-up assembly as described in claim 14, further comprising:a second mandrel element positioned adjacent said first mandrel element on said contoured curing block, said second mandrel assembly including a plurality of rigidity reducing second slots formed along a second mandrel length, said plurality of rigidity reducing second slots protruding partially through a second mandrel depth of said second mandrel element to allow said second mandrel assembly to conform to said contoured curing block.
  26. 26
    An aircraft stringer lay-up assembly as described in claim 25, wherein said composite ply assembly is laid up between said first mandrel element and said second mandrel element, said composite ply assembly extending over a first mandrel upper vertical surface and a second mandrel upper vertical surface, said composite ply assembly extending over a first mandrel lower vertical surface and a second mandrel lower vertical surface such that said contoured composite stringer element comprises a contoured I-beam element.
  27. 27
    A method of laying up an aircraft stringer comprising:forming a plurality of rigidity reducing first elements in a first mandrel element along a first mandrel length;placing said first mandrel element on a contoured curing block, said plurality or rigidity reducing first elements allowing said first mandrel element to conform to said contoured curing block;laying up a composite ply assembly onto said first mandrel element as said first mandrel element is conformed to said contoured curing block;and curing said composite ply assembly such that a contoured composite stringer is generated.
  28. 28
    A method as described in claim 27, wherein said plurality of rigidity reducing first elements are formed as a plurality of rigidity reducing first slots formed in a first elongated metal beam.
  29. 29
    A method as described in claim 27, wherein said plurality of rigidity reducing first elements are formed as a plurality of tapered slits including an open end and a tapered end, said open end positioned along a first mandrel vertical surface, said tapered end positioned along a first mandrel side surface.
  30. 30
    A method as described in claim 27, wherein said plurality of rigidity reducing first elements are formed using wire electrical discharge machining.
  31. 31
    A method as described in claim 27, wherein said plurality of rigidity reducing first elements are formed using wire electrical discharge machining.
  32. 32
    A method as described in claim 31 further comprising:machining said plurality of rigidity reducing first elements to less than .01 inches wide.
  33. 33
    A method as described in claim 27 further comprising:forming a central bore chamber in said first mandrel element centered through said first mandrel length;and inserting a center support wire through said central bore chamber, said center support wire controlling flexibility of said first mandrel element.
  34. 34
    A method as described in claim 27, wherein said forming said plurality of rigidity reducing first elements comprises:forming a first grouping of rigidity reducing slots along a first mandrel upper vertical surface;and a second grouping of rigidity reducing slots along a first mandrel lower surface.
  35. 35
    A method as described in claim 27 further comprising:sealing said contoured curing block, said first mandrel element, and said composite ply assembly within a vacuum bag assembly prior to said curing.
  36. 36
    A method as described in claim 27 further comprising:clamping said first mandrel element to said contoured curing block prior to said curing.
  37. 37
    A method as described in claim 27 further comprising:sealing said contoured curing block, said first mandrel element, and said composite ply assembly within a vacuum bag assembly prior to said curing.
  38. 38
    A method as described in claim 27 further comprising:forming a plurality of rigidity reducing second elements in a second mandrel element along a second mandrel length;placing said second mandrel element on said contoured curing block adjacent said first mandrel element, said plurality or rigidity reducing second elements allowing said second mandrel element to conform to said contoured curing block;and laying up said composite ply assembly between said first mandrel element and said second mandrel element to form a contoured composite stringer.
  39. 39
    A method as described in Claim 38, further comprising:laying up said composite ply assembly over a first mandrel upper vertical surface and a second mandrel upper vertical surface;laying up said composite ply assembly over a first mandrel lower vertical surface and a second mandrel lower vertical surface;and curing said composite ply assembly such that said contoured composite stringer element comprises a contoured I-beam element.
  40. 40
    A method of laying up an aircraft stringer comprising:forming a plurality of rigidity reducing first slots in a first elongated metal beam of a first mandrel element along a first mandrel length;arranging said first mandrel element into a complex contour;laying up a composite ply assembly onto said first mandrel element while said first mandrel element is in said complex contour;and curing said composite ply assembly such that a contoured composite stringer is generated.
  41. 41
    A method as described in Claim 40, further comprising:placing said first mandrel element on a contoured curing block contoured across both a first curing block planar direction and a second curing block planar direction to generate said complex contour.
  42. 42
    A method as described in Claim 40, further comprising:forming a plurality of rigidity reducing second slots in a second mandrel element along a second mandrel length;arranging said second mandrel element in said complex contour adjacent said first mandrel element;and laying up said composite ply assembly between said first mandrel element and said second mandrel element.
  43. 43
    A method as described in Claim 42 further comprising:laying up said composite ply assembly over a first mandrel upper vertical surface and a second mandrel upper vertical surface;laying up said composite ply assembly over a first mandrel lower vertical surface and a second mandrel lower vertical surface;and curing said composite ply assembly such that said contoured composite stringer element comprises a contoured I-beam element..
Independent claims43