Claims
- 1. A method for forming a sheet metal part comprising the steps of:
- placing a part blank against a form tool;
- enclosing said part blank and said form tool within a flexible envelope by at least partially wrapping said envelope around said part blank;
- sealing said envelope against atmospheric pressure;
- providing a vacuum within said envelope for holding said envelope against said part blank in substantially form fitting engagement with said forming tool; and
- heating said envelope, said part blank and said form tool for a period of time thereby forming the sheet metal part.
- 2. The method according to claim 1 further including providing differential force between said form tool and said envelope to urge said part against said form tool.
- 3. The method according to claim 1 further comprising perforating said part blank with a plurality of apertures.
- 4. The method according to claim 1 further comprising the step of purging the enclosed portion of said envelope with an inert atmosphere for a period of time after said step of sealing said envelope and before providing a vacuum.
- 5. A method for forming a sheet metal part comprising the steps of:
- placing a part blank against a form tool;
- enclosing said part blank and said form tool within an envelope;
- sealing said envelope against atmospheric pressure;
- providing a vacuum within said envelope for holding said envelope against said part blank;
- heating said envelope, said part blank and said form tool for a period of time; and
- replacing said vacuum with an inert atmosphere once the heating period is complete thereby forming the sheet metal part.
- 6. The method according to claim 5 wherein said step of replacing said vacuum with an inert atmosphere comprises providing Argon.
- 7. A method for forming a sheet metal part comprising the steps of:
- placing a part blank against a form tool;
- enclosing said part blank and said form tool within a stainless steel envelope;
- sealing said envelope against atmospheric pressure;
- providing a vacuum within said envelope for holding said envelope against said part blank; and
- heating said envelope, said part blank and said form tool for a period of time thereby forming the sheet metal part.
- 8. A method for forming a sheet metal part comprising the steps of:
- preforming a part blank to be approximately the shape of a form tool;
- placing said part blank against said form tool;
- enclosing said part blank and said form tool within an envelope;
- sealing said envelope against atmospheric pressure;
- providing a vacuum within said envelope for holding said envelope against said part blank; and
- heating said envelope, said part blank and said form tool for a period of time thereby forming the sheet metal part.
- 9. A method for forming a portion of an airfoil to within strict waviness tolerances comprising the steps of:
- perforating said portion with a multiplicity of apertures;
- placing said airfoil portion around a convexly shaped form tool adapted to provide the final configuration of said portion;
- enclosing said airfoil portion and said form tool within an envelope, at least a portion of said envelope having relatively high collapsibility properties;
- sealing said envelope against atmospheric pressure;
- providing external force inwardly against said convexly shaped form tool relative to edges of said envelope;
- providing a vacuum within said envelope for pulling said envelope tightly against said form tool;
- removing said external force while maintaining said vacuum; and
- heating the combination of said envelope, said airfoil portion and said form tool for a period of time.
- 10. The method according to claim 9 further comprising the step of releasing said vacuum and providing an inert replacement atmosphere after the heating period.
- 11. Apparatus for forming a sheet metal part comprising:
- a forming tool of the shape to which the part is to be formed;
- a flexible envelope member for holding said part in substantially form fitting engagement with said forming tool;
- means for atmospherically sealing the part against said forming tool to provide an enclosure and for drawing a vacuum therewithin; and
- means for physically urging the part against said forming tool.
- 12. Apparatus according to claim 11 wherein said means for physically urging the part comprises hydraulic means.
- 13. Apparatus for flattening a metal sheet comprising:
- a flat plate;
- a flexible envelope for enclosing said sheet and at least a portion of said plate for forming a chamber, said sheet being disposed within the chamber between said plate and said envelope;
- means for atmospherically sealing said chamber; and
- means for withdrawing air from said chamber.
- 14. A method for flattening a metal sheet comprising the steps of:
- placing the metal sheet against a flattening plate;
- sealing the metal sheet and at least part of the flattening plate within a flexible envelope;
- evacuating the envelope; and
- heating the metal sheet for stress relief while maintaining the evacuated state of said envelope.
- 15. A method for flattening a metal sheet comprising the steps of:
- placing the metal sheet against a flattening plate;
- sealing the metal sheet and at least part of the flattening plate within an envelope;
- evacuating the envelope;
- heating the metal sheet for stress relief; and
- providing the envelope with an inert atmosphere after heating is completed.
BACKGROUND OF THE INVENTION
The invention described herein was made in the performance of work under a NASA contract NASI-18574 and is subject to the provisions of Section 305 of the National Aeronautics and Space Act of 1948, Public Law 85-568 (72 STAT.435: 42 USC 2457).
US Referenced Citations (13)
Foreign Referenced Citations (3)
Number |
Date |
Country |
2117950 |
Oct 1972 |
DEX |
0590163 |
Jan 1978 |
SUX |
1488099 |
Jun 1989 |
SUX |