Claims
- 1. A hinge for moving panels from a stow position to a deployed position for forming a hinged surface, the hinge comprising,
a shape memory alloy, edges for securing the panels to the hinge for forming the hinged surface, and a trained deployed configuration for defining a deployed position of the panels forming the hinged surface, the hinge for bending about a hinge axis for placing the panels in the stowed position, the hinge for unbending about to the hinge axis for placing and the panels in the deployed position for forming the hinged surface.
- 2. The hinge of claim 1 wherein,
the shape memory alloy is nitinol, the panels are solar panels.
- 3. The hinge of claim 1 wherein,
the panels are solar panels, the hinged surface is a solar cell array, the hinge is conductive for conducting current from the solar cell array.
- 4. The hinge of claim 1 further comprising,
a trained latched configuration for locking the panels into the deployed position after unbending, the hinge for bending about a latch axis when placing the panels in the stowed position, the hinge for unbending about the latch axis when locking the panels in the deployed position.
- 5. The hinge of claim 1 further comprising,
a trained latched configuration for locking the panels into the deployed position after unbending, the hinge for bending about a latch axis when placing the panels in the stowed position, the hinge for unbending about the latch axis when locking the panels in the deployed position, the latch axis being orthogonal to the hinge axis.
- 6. A hinged surface comprising,
panels having edges, and hinges made of a shape memory alloy and secured to the edges for deploying the panels to a predetermined deployed position for the hinged surface, the hinge being trained to return to the predetermined deployed position when released from a bent stowed position.
- 7. The hinged surface of claimed 6 wherein,
the panels are a solar panels, and the shape memory alloy is nitinol.
- 8. The hinged surface of claim 6 wherein,
the panels are solar panels, and the hinged surface is a powersphere.
- 9. The hinged surface of claim 6 wherein,
the panels are solar panels, and the hinged surface is a powerbox.
- 10. The hinged surface of claim 6 wherein,
the hinges are conductive, the panels are solar panels, and the hinges are for conducting current from the solar panels.
- 11. The hinged surface of claim 6 wherein,
the hinges trained to unbend about a hinge axis to deploy the surfaces.
- 12. The hinged surface of claim 6 wherein,
the hinges trained to unbend about a hinge axis to deploy the surfaces, and the hinges are trained to unbend about a latch axis to lock in place the panels after deployment to the deployed position.
- 13. The hinged surface of claim 6 wherein,
the hinges are conductive, the panels are solar panels, and the hinges are for conducting current from the solar panels, and the hinged surface further comprising,
jumpers for electrically connecting together the hinges forming a power bus for conducting current from the solar panels.
- 14. The hinge surface of claim 6 wherein,
the hinge surface is plated with a conducting metal at ends of the hinges for improving electrical conductivity between the hinges.
- 15. The hinged surface of claim 6 wherein,
the panels having a predetermined thickness, the hinges are for bending at a radius of twice the thickness of the panels for stowing the panels in a stack during the stowed position.
REFERENCE TO RELATED APPLICATION
[0001] The present application is related to applicant's copending application entitled “Power Sphere”, Ser. No. ______, filed ______.
[0002] The present application is related to applicant's copending application entitled “Conductive Shape Memory Metal Deployment Latch Hinge Deployment Method”, Ser. No. ______, filed _______.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09886416 |
Jun 2001 |
US |
Child |
10457927 |
Jun 2003 |
US |