Space optics
An optical mirror assembly includes a crystalline face sheet and a carbon fiber sandwich. The crystalline face sheet has a first surface configured to reflect light and a second surface coupled to the carbon fiber sandwich by a layer of epoxy. The carbon fiber sandwich is configured to structurally support the crystalline face sheet. The carbon fiber sandwich includes a first carbon fiber layer, a second carbon fiber layer and a substrate positioned between the first carbon fiber layer and the second carbon fiber layer.
1. An optical mirror assembly comprising:
a crystalline face sheet comprising a first surface and a second surface opposing the first surface, the first surface configured to reflect light, the crystalline face sheet having a first coefficient of thermal expansion; and
a carbon fiber sandwich comprising:
a first carbon fiber layer coupled to the second surface of the crystalline face sheet,
a layer of epoxy between the first carbon fiber layer and the crystalline face sheet, the layer of epoxy having a thickness of 50 to 2000 micrometers and a second coefficient of thermal expansion of 9 to 250 parts million per degree Kelvin to compensate for a difference in expansion due to the first coefficient of thermal expansion and the second coefficient of thermal expansion,
a second carbon fiber layer, the first carbon fiber layer and the second carbon fiber layer having a coefficient of thermal expansion between −1.5 and 2.5 parts per million per degree Kelvin,
a substrate between the first carbon fiber layer and the second carbon fiber layer, and
a carbon fiber wall around a perimeter of the substrate, and coupled to at least one of the first carbon fiber layer and the second carbon fiber layer.
2. The optical mirror assembly of claim 1 , wherein the substrate is a carbon infused foam.
3. The optical mirror assembly of claim 1 , wherein the substrate is carbon fiber with a honey comb shape.
4. The optical mirror assembly of claim 1 , wherein the crystalline face sheet is formed with an aperture and the carbon fiber sandwich is formed with another aperture aligned with the aperture.
5. The optical mirror assembly of claim 1 , wherein the first carbon fiber layer and the second carbon fiber layer each have a thickness of 50 to 250 micrometers.
6. The optical mirror assembly of claim 1 , wherein the crystalline face sheet is a concave mirror.
7. The optical mirror assembly of claim 1 , wherein the layer of epoxy has a Young's Modulus of 3 to 10,000 Mega Pascals.
8. The optical mirror assembly of claim 1 , wherein the first carbon fiber layer and the second carbon fiber layer have a Young's Modulus of 100 to 500 Giga Pascals.
9. The optical mirror assembly of claim 1 , wherein optical mirror assembly is a primary mirror in a Cassegrainian telescope.