Claims
- 1. An apparatus for laminar flow control of an aircraft structure which is capable of being formed from superplastic deformation of a forming pack of stacked sheets comprising:
- a thin solid upper sheet,
- a perforated sheet adjacent said upper sheet having perforations therethrough,
- a core sheet adjacent said perforated sheet which is attached by a plurality of seam welds along said perforated sheet, and which provides a plurality of internal passages which communicate with the perforations in said perforated sheet, and
- a solid lower face sheet,
- wherein said solid upper sheet and said solid lower face sheet provide sealed surfaces so that the perforated sheet of the forming pack is capable of being internally pressurized for superplastic forming of the pack of stacked sheets, and
- wherein said thin solid upper sheet is capable of being removed to expose the perforations of said perforated sheet, so that the plurality of internal passages are capable of being in communication through said perforated sheet with the atmosphere located adjacent the aircraft structure.
- 2. The apparatus as in claim 1 wherein, said perforations each have transverse cross-sectional areas, with the cross-sectional area of the perforation at the upper side of the perforated sheet being smaller than the area at the side adjacent the passages of said core sheet.
- 3. The apparatus as in claim 2 wherein, said perforations have an axial taper.
- 4. The apparatus as in claim 1 wherein, the pressure and fluid flow within said internal passages are capable of being controlled to thereby control the laminar flow over the surface of the aircraft structure.
- 5. The apparatus as in claim 4 wherein said passages are capable of being independently and selectively controlled to thereby control the laminar flow over the surface of the aircraft structure.
- 6. An apparatus for laminar flow control, comprising:
- a perforated sheet having perforations therethrough, said perforated sheet being an integral part of a superplastically formed structure;
- a solid face disposed opposite of said perforated sheet;
- a solid core sheet disposed between said perforated sheet and said solid face, said solid core sheet contacting the solid face at a first plurality of locations and having doubled-up portions at a second plurality of locations, said solid core sheet extending away from said solid face and contacting said perforated sheet at said second plurality of locations, said doubled-up portions having sections of the surface of said core sheet adjacent said solid face, said sections being in face to face contact; and
- said structure containing a second plurality of locations of said solid core sheet fuming at least one passageway fluidly communicating through said perforated sheet with an ambient atmosphere located adjacent said perforated sheet,
- whereby laminar flow over said perforated sheet can be controlled.
- 7. The laminar flow control apparatus recited in claim 6 wherein:
- said perforations are of a singular shape;
- said perforated sheet has an exposed surface lying adjacent the ambient atmosphere and a blind surface facing a direction opposite that of said exposed surface;
- said perforation shape having transverse cross sections, with each of said transverse cross sections having an area; and
- said area at said blind surface is greater than said area at said exposed surface.
- 8. The laminar flow control apparatus recited in claim 7 wherein:
- said perforation shape has an axial taper; and
- said area has its maximum at said blind surface.
- 9. The laminar flow control apparatus recited in claim 8 wherein said transverse cross sections are approximately circular.
- 10. The laminar flow control apparatus recited in claim 6 wherein:
- said passageway has a controllable pressure, whereby
- laminar flow-over said exposed surface can be controlled by controlling said pressure.
- 11. The laminar flow control apparatus recited in claim 10 wherein:
- said passageway is a plurality of passageways; and
- said pressure in each of said passageways is individually controllable.
- 12. The laminar flow control apparatus recited in claim 6 wherein:
- said structure is formed from superplastic deformation of a forming pack comprised of stacked sheets;
- said forming pack includes said perforated sheet and a solid sheet; and
- said perforated sheet and said solid sheet are diffusion bonded together.
- 13. The laminar flow control apparatus in claim 12 wherein said solid sheet is removed from said perforated sheet after superplastic deformation of said forming pack.
- 14. The laminar flow control apparatus recited in claim 13 wherein:
- said forming pack has two end sheets between which all other of said stacked sheets of said forming pack are located; and
- one of said end sheets is said solid sheet.
- 15. The laminar flow control apparatus recited in claim 14 wherein:
- said forming pack includes a core sheet which is not one of said end sheets; and
- said core sheet is welded to said perforated sheet.
- 16. An apparatus for laminar flow control, comprising:
- a perforated sheet having perforations therethrough;
- a solid face disposed opposite of said perforated sheet; and
- a solid core sheet disposed between said perforated sheet and said solid face, said solid core sheet contacting said solid face at a first plurality of locations and having doubled-up portions at a second plurality of locations, said solid core sheet extending away from said solid face and contacting said perforated sheet at the second plurality of locations, said doubled-up portions having sections of the surface of said core sheet adjacent said solid face, said sections being in face to face contact.
- 17. The apparatus for laminar flow control according to claim 16, said solid core sheet forming webs at each of said second plurality of locations, where said solid core sheet is doubled up to extend from said solid face to said perforated sheet.
- 18. The apparatus for laminar flow control according to claim 17, said webs forming at least one passageway, which is in fluid communication via the perforations with an ambient atmosphere located adjacent said perforated sheet.
- 19. The apparatus for laminar flow control according to claim 18, a pressure within the passageway being controllable to thereby control a laminar flow over said perforated sheet.
- 20. The apparatus for laminar flow control according to claim 16, said solid core sheet being diffusion bonded to both said perforated sheet and said solid face.
- 21. The apparatus for laminar flow control according to claim 16, said perforated sheet defining an exposed surface and the solid face defining a blind surface.
Parent Case Info
This is a division of application Ser. No. 08/034,874, filed Mar. 19, 1993, now U.S. Pat. No. 5,398,410.
US Referenced Citations (10)
Divisions (1)
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Number |
Date |
Country |
Parent |
34874 |
Mar 1993 |
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