Claims
- 1. A heat shield characterized by its ability to insulate from heat or cold and comprising:
- a first covering layer;
- a second covering layer overlying said first covering layer, said first covering layer and said second covering layer being flat and non-flammable;
- a base means positioned between said first covering layer and said second covering layer;
- a plurality of microcapsules integral with and dispersed throughout said base means and being held in place thereby, said microcapsules having a diameter of less than about 10 microns and containing paraffinic hydrocarbon as a thermal energy absorbing means and wherein said microcapsules are adapted to withstand repeated latent heat of fusion thermocycling;
- whereby the shield exhibits enhanced thermal shielding properties and repeatability of thermal response over extended time periods when subjected to thermal energy.
- 2. A heat shield according to claim 1 wherein said base means comprises a silicone rubber binder.
- 3. A heat shield according to claim 1 further including additional covering layers and additional layers of thermal energy absorbing means positioned between adjacent covering layers.
- 4. A heat shield according to claim 1 wherein said first covering layer and said second covering layer further include metal covering layer.
- 5. A heat shield characterized by its ability to insulate from heat or cold and comprising:
- a first flat non-flammable covering layer;
- a second flat non-flammable covering layer adapted to overlie said first covering layer; and
- a base means positioned between said first covering layer and said second covering layer;
- a plurality of microcapsules having a diameter of less than about 10 microns integral with and dispersed throughout said base means and being held in place thereby, said microcapsules being adapted to withstand repeated latent heat of fusion thermocycling and containing a paraffinic hydrocarbon selected from the group consisting of n-Octacosane, n-Heptacosane, n-Hexacosane, n-Pentacosane, n-Tetracosane, n-Tricosane, n-Docosane, n-Heneicosane, n-Eicosane, n-Nonadecane, n-Octadecane, n-Heptadecane, n-Hexadecane, n-Pentadeceane, n-Tetradecane, and n-Tridecane;
- whereby the shield exhibits enhanced thermal shielding properties and repeatability of performance over extended time periods when subjected to thermal energy.
- 6. A heat shield according to claim 5 wherein said first covering layer and said second covering layer are connected together about at least a portion of their outer peripheral edges thereby retaining said thermal energy absorbing mean between said respective first and second covering layers.
- 7. A heat shield according to claim 5 wherein said first and second flame resistant covering layers comprise a metal covered mylar.
- 8. A heat shield according to claim 7 wherein said metal comprises aluminum.
- 9. A heat shield according to claim 5 wherein said base means comprises a silicone rubber binder.
Government Interests
This invention was made with Government support under contract no. F33615-86-C-3430 awarded by the United States Air Force. The Government has certain rights in this invention.
US Referenced Citations (14)