Claims
- 1. An article of manufacture comprising:
an aluminum skin having a surface; a thermoplastic build-up applied to the surface of the aluminum skin in a heated state to bond to the skin and cools to form a selected pattern on the surface from a plurality of cell walls, each of the plurality of cell walls being essentially perpendicular to the surface; and an aluminum backing conformed to and bonded to the build-up wherein the aluminum skin, the thermoplastic build-up, and the aluminum backing form a unitary surface structure.
- 2. The article of claim 1 wherein the aluminum skin is formed from 6061-O aluminum sheet.
- 3. The article of claim 1 wherein the aluminum backing comprises 6061-O aluminum sheet.
- 4. The article of claim 1 wherein the selected pattern includes a first section and a second section, the first section being a hexagonal pattern and the second section being a circular pattern, the first section being proximate to the surface of the skin and the second section being proximate to the backing.
- 5. The article of claim 1 wherein the thermoplastic build-up further comprises filler.
- 6. The article of claim 5 wherein the filler comprises carbon fibers.
- 7. The article of claim 5 wherein the filler comprises microspheres or microballons, the microspheres or microballons acting to lower the viscosity of a composite build up material.
- 8. The article of claim 7 wherein the thermoplastic build-up comprises polycarbonate.
- 9. The article of claim 1 wherein the surface of the metal sheet includes a curve.
- 10. The article of claim 9 wherein the curve defines an aspect ratio between about 0.2-0.6.
- 11. An article of manufacture comprising:
a skin formed from 6061-O aluminum sheet metal, the skin having a surface, the surface having a curved portion defining an aspect ratio between about 0.2-0.6; a polycarbonate-composite build-up applied to the surface in a selected pattern, the selected pattern including a hexagonal section and a columnar section, the hexagonal section being proximate to the surface and transitioning to the columnar section, the polycarbonate-composite build-up including microballons and polycarbonate resin; and a backing conformed to the columnar section of the build-up, the backing being formed from 6061-O aluminum sheet metal, wherein the skin, build-up, and backing form a unitary surface structure.
- 12. A method for making a surface structure, the method comprising:
applying gas pressure to a distal surface of a 6061-O aluminum sheet metal skin preform to conform a proximal surface of the skin preform to a single-sided mold to form a skin; dispensing a thermoplastic resin to the distal surface of the skin in a hexagonal pattern to form a plurality of cells; transitioning from the hexagonal pattern to a columnar pattern; and applying gas pressure to a first surface of a 6061-O aluminum sheet metal backing preform to conform the backing preform to the columnar pattern.
- 13. The method of claim 12 further comprising, prior to the step of dispensing, mixing a filler with the thermoplastic resin to form a composite resin.
- 14. The method of claim 13 wherein the filler comprises microballons, the microballons reducing the viscosity of the composite resin.
- 15. The method of claim 12 further comprising, prior to the step of dispensing, of applying a layer of thermoplastic resin to the distal surface of the skin.
- 16. The method of claim 15 wherein the layer is between about 0.004-0.030 inches thick.
- 17. The method of claim 12 wherein the skin is heated to facilitate bonding between the skin and the thermoplastic resin.
- 18. The method of claim 1 further comprising, prior to the step of applying gas pressure to the skin preform, of heating the skin preform to about 450° F.
- 19. The method of claim 1 wherein the gas pressure is applied as a pressure ramp.
- 20. The method of claim 19 wherein the aluminum skin comprises 6061-O aluminum sheet between about 0.020-0.060 inches thick, and wherein the surface includes a curved section with an aspect ratio greater than about 0.4, and wherein the pressure ramp increases a forming pressure from about 0 psig to about 45 psig in about 10-20 minutes.
- 21. A method for making a surface structure the method comprising:
placing a 6061-O aluminum skin preform on a single-sided die, the single-sided die defining a surface with an aspect ratio between about 0.4-0.6; heating the skin preform to a temperature of about 450° F.; applying a gas pressure ramp to a distal surface of the skin preform to conform the skin preform to the single-sided die, the gas pressure ramp increasing a forming pressure from about 0 psig to about 45 psig in about 10-20 minutes to form a skin; mixing glass microspheres with polycarbonate resin, the polycarbonate resin being heated to a fluid state, to form a composite resin; dispensing the composite resin onto the distal surface of the skin in a hexagonal pattern to form a plurality of cells having a plurality of cell walls, each of the cell walls being essentially perpendicular to the surface; transitioning from the hexagonal pattern to a columnar pattern; and applying gas pressure to a first surface of a 6061-O aluminum sheet metal backing preform to conform the backing preform to the columnar pattern to form a unitary surface structure.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is being filed concurrently with the following applications: THREE-DIMENSIONAL INTEGRATED COMPOSITE SURFACE STRUCTURES by Hillier (Atty. Docket No. 018981-000200); APPARATUS FOR FABRICATING SURFACE STRUCTURES by Hillier (Atty. Docket No. 018981-000300); and METHOD AND APPARATUS FOR FORMING SURFACE STRUCTURES FROM A SINGLE-SIDED MOLD by Hillier (Atty. Docket No. 08981-000400).
Divisions (1)
|
Number |
Date |
Country |
Parent |
09222544 |
Dec 1998 |
US |
Child |
09825605 |
Apr 2001 |
US |