IP Library Granted Patent US 6,986,585
Granted Patent B1
US 6,986,585 · App. 10/978,887 · Granted Jan 17, 2006

Radius of curvature controlled mirror

Assignee: Southeastern Univ. Research Assm
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Quick Facts
Patent No.
US 6,986,585
App. No.
10/978,887
Granted
Jan 17, 2006
Kind
B1
Abstract

A controlled radius of curvature mirror assembly comprising: a distortable mirror having a reflective surface and a rear surface; and in descending order from the rear surface; a counter-distortion plate; a flow diverter having a flow diverter aperture at the center thereof; a flow return plate having a flow return aperture at the center thereof; a thermal isolation plate having a thermal isolation plate aperture at the center thereof and a flexible heater having a rear surface and a flexible heater aperture at the center thereof; a double walled tube defining a coolant feed chamber and a coolant return chamber; said coolant feed chamber extending to and through the flow diverter aperture and terminating at the counter-distortion plate and the coolant return chamber extending to and through the thermal isolation backplate and terminating at the flow diverter; and a coolant feed and a coolant return exit at the rear of said flexible heater.

Claims (16)

1. A controlled radius of curvature mirror assembly comprising bonded in order:

a) a distortable mirror having a reflective surface and a rear surface; and in descending order from the rear surface;

b) a counter-distortion plate of a material dissimilar to that of the distortable mirror;

c) a flow diverter having a flow diverter aperture at the center thereof;

d) a flow return plate having a flow return aperture at the center thereof;

e) a thermal isolation plate having a thermal isolation plate aperture at the center thereof;

f) a flexible heater having a rear surface and a flexible heater aperture at the center thereof; and

g) a double walled tube defining a coolant feed chamber and a coolant return chamber;

said coolant feed chamber extending from the flexible heater aperture to and through the flow diverter aperture and terminating at the counter-distortion plate and the coolant return chamber extending from the flexible heater aperture to and through the thermal isolation backplate and terminating at the flow diverter.

2. The controlled radius of curvature mirror assembly of claim 1 wherein the double walled tube further includes a coolant feed and a coolant return exit.

3. The controlled radius of curvature mirror assembly of claim 1 wherein said counter-distortion plate comprises a metal.

4. The controlled radius of curvature mirror assembly of claim 3 wherein said metal is selected from the group consisting of copper, steel and aluminum.

5. The controlled radius of curvature mirror assembly of claim 1 wherein said mirror is a silicon mirror.

6. The controlled radius of curvature mirror assembly of claim 1 wherein the flow diverter includes a mechanism for dispersing coolant over the surface thereof and a mechanism for returning dispersed coolant to the flow return plate.

7. The controlled radius of curvature mirror assembly of claim 6 wherein the diverter has a front surface proximate the mirror and the mechanism for dispersing coolant over the surface thereof comprises a series of ribs on the front surface and the mechanism for returning dispersed coolant to the flow return plate comprises apertures about the periphery of the diverter.

8. The controlled radius of curvature mirror assembly of claim 1 wherein the thermal isolation plate comprises a plate having a plurality of apertures therein for the permeation of air or another suitable insulator material.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 14, 2006
From: SOUTHEASTERN UNIVERSITIES RESEARCH ASSOCIATION, INC.
To: JEFFERSON SCIENCE ASSOCIATES, LLC
Reel/Frame 017783/0905 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 1, 2004
From: NEIL, GEORGE R.; RATHKE, JOHN WICKHAM; SCHULTHEISS, THOMAS JOHN; SHINN, MICHELLE D.; DILLON-TOWNES, LAWRENCE A.
To: SOUTHEASTERN UNIV. RESEARCH ASSN.
Reel/Frame 015956/0339 →