Claims
- 1. An electrochromic aircraft window assembly comprising:
a) an outboard pane assembly; and b) a fog preventing electrochromic pane assembly spaced from said outboard pane assembly and defining a chamber therebetween, said fog preventing electrochromic pane assembly comprising:
i) a first substrate having a first surface including a first conductive coating and a second surface including a second conductive coating; ii) a second substrate spaced from said first substrate, said second substrate having a first surface including a third conductive coating, said second surface of said first substrate and said first surface of said second substrate facing each other in spaced-apart relation to define a chamber therebetween; iii) an electrochromic medium contained in said chamber and in contact with said second and said third conductive coatings, said electrochromic medium having a luminous transmittance that varies upon application of an electrical potential through said electrochromic medium; iv) facilities for applying electrical current to said first conductive coating to heat said first conductive coating, thereby preventing fogging of said window assembly; and v) facilities for applying electrical current to said second and said third conductive coatings to establish said electrical potential through said electrochromic medium and vary said variable luminous transmittance of said electrochromic medium.
- 2. The window assembly according to claim 1, wherein said outboard pane assembly and said fog preventing electrochromic pane assembly are contoured.
- 3. The window assembly according to claim 1, wherein said electrical current is applied to said first conductive coating at a power density ranging from 0.25 to 0.40 watts/in2 to prevent fogging, and said electrical current is applied to said second and said third conductive coatings at a power density ranging from 0.0001 to 0.01 watts/in2 to vary said luminous transmittance of said electrochromic medium.
- 4. The window assembly according to claim 1, wherein said electrical current is applied to said first conductive coating at a power density ranging from 0.25 to 0.40 watts/in2 to prevent fogging.
- 5. The window assembly according to claim 1, wherein said electrical current is applied to said second and said third conductive coatings at a power density ranging from 0.0001 to 0.01 watts/in2 to vary said luminous transmittance of said electrochromic medium.
- 6. The window assembly according to claim 1, wherein said electrochromic medium comprises at least one anodic electrochromic compound and at least one cathodic electrochromic compound, and wherein application of electrical potential to said electrochromic medium causes simultaneous oxidation of said anodic electrochromic compound and reduction of said cathodic electrochromic compound, thereby reducing said luminous transmittance.
- 7. The window assembly according to claim 6 wherein, said electrochromic medium is self-erasing upon elimination or reduction of electrical potential to said electrochromic medium.
- 8. The window assembly according to claim 1, wherein said luminous transmittance of said fog preventing electrochromic pane assembly of said window assembly varies from a minimum LTA ranging from 1 to 20 percent and a maximum LTA ranging from 60 to 80 percent.
- 9. The window assembly according to claim 1, wherein said first and second spaced substrates are glass.
- 10. The window assembly according to claim 1, wherein said outboard pane assembly comprises a laminated pane comprising an inboard acrylic layer, an outboard acrylic layer and an interlayer interposed between and adhering together said inboard acrylic layer and said outboard acrylic layer.
- 11. The window assembly according to claim 10, wherein said inboard acrylic layer is stretched acrylic ranging from 0.2 to 0.4 inches thick, said outboard acrylic layer is stretched acrylic ranging from 0.2 to 0.4 inches thick, and said interlayer is polyvinyl butyral ranging from 0.025 to 0.05 inches thick.
- 12. The window assembly according to claim 1, wherein said first substrate further comprises an adhesive interlayer deposited along at least a portion of said first surface of said first substrate, and a sound dampening material layer deposited over said adhesive interlayer.
- 13. The window assembly according to claim 12, wherein said sound dampening material layer is a laminate comprising a polyvinyl butyral layer and a polyester disposed over and in contact with said polyvinyl butyral layer.
- 14. The window assembly according to claim 12, wherein said first conductive coating is interposed between said adhesive layer and said base layer of said first substrate.
- 15. An electrochromic aircraft window assembly comprising:
a) an outboard pane assembly; b) an electrochromic pane assembly comprising first and second spaced substrates defining a chamber therebetween and an electrochromic medium contained in said chamber, said electrochromic medium having a luminous transmittance that varies upon application of an electrical potential through said electrochromic medium; and c) an intermediate pane assembly having anti-fogging properties, wherein said outboard pane assembly and said electrochromic pane assembly have facing surfaces and said intermediate pane assembly is interposed between and spaced from said outboard pane assembly and said electrochromic pane assembly, said intermediate pane assembly preventing fogging of said respective facing surfaces of said outboard pane assembly and said electrochromic pane assembly.
- 16. The window assembly according to claim 15, wherein said intermediate pane assembly includes a first conductive coating and facilities for applying electrical current to said first conductive coating to heat said first conductive coating, thereby providing said anti-fogging properties.
- 17. The window assembly according to claim 15, further comprising a second conductive coating on a surface of said first substrate, a third conductive coating on a surface of said second substrate, and facilities for applying electrical current to said second and said third conductive coatings and impress said electrical potential through said electrochromic medium to cause said luminous transmittance of said electrochromic medium to vary, said second conductive coating and said third conductive coating on facing surfaces of said first and second substrates and being spaced from each other.
- 18. The window assembly according to claim 17, wherein said first, second and third conductive coatings are selected from metal and metal oxide coatings.
- 19. The window assembly according to claim 18, wherein said first, second and third conductive coatings are selected from fluorine-doped tin oxide, indium tin oxide, antimony-doped tin oxide, silver, gold, and combinations thereof.
- 20. The window assembly according to claim 17, wherein said electrical current is applied to said first conductive coating at a power density ranging from 0.25 to 0.40 watts/in2 and said electrical current is applied to said second and said third conductive coatings at a power density ranging from 0.0001 to 0.01 watts/in2.
- 21. The window assembly according to claim 15, wherein said electrochromic medium comprises at least one anodic electrochromic compound and at least one cathodic electrochromic compound, and wherein application of electrical potential to said electrochromic medium causes simultaneous oxidation of said anodic electrochromic compound and reduction of said cathodic electrochromic compound thereby causing reduced luminous transmittance.
- 22. The window assembly according to claim 21 wherein, said electrochromic medium is self-erasing upon elimination or reduction of electrical potential to said electrochromic medium.
- 23. The window assembly according to claim 15, wherein luminous transmittance of said electrochromic pane assembly of said window assembly varies from a minimum LTA ranging from 1 to 20 percent and a maximum LTA ranging from 60 to 80 percent.
- 24. The window assembly according to claim 15, wherein said first and second spaced substrates are glass.
- 25. The window assembly according to claim 15, wherein said outboard pane assembly comprises a laminated pane comprising an inboard acrylic layer, an outboard acrylic layer and an interlayer interposed between and adhering together said inboard acrylic layer and said outboard acrylic layer.
- 26. The window assembly according to claim 25, wherein said inboard acrylic layer is stretched acrylic ranging from 0.2 to 0.4 inches thick, said outboard acrylic layer is stretched acrylic ranging from 0.2 to 0.4 inches thick, and said interlayer is polyvinyl butyral ranging from 0.025 to 0.05 inches thick.
- 27. The window assembly according to claim 15, wherein said intermediate pane assembly comprises a vibration dampening/sound absorbing pane assembly laminate having a base substrate, an adhesive interlayer deposited over said base substrate and a sound dampening material layer deposited over said adhesive interlayer and adhered to said base substrate by said adhesive layer.
- 28. The window assembly according to claim 27, wherein said sound dampening material layer is a laminate comprising a polyvinyl butyral layer and a polyester disposed over and in contact with said polyvinyl butyral layer.
- 29. The window assembly according to claim 28, wherein said first conductive coating is interposed between said adhesive layer and said base substrate of said vibration dampening/sound absorbing pane assembly.
- 30. An electrochromic aircraft window assembly comprising:
a) an outboard pane assembly; b) a vibration dampening/sound absorbing pane assembly comprising a laminate comprising a base substrate, an adhesive interlayer deposited over a surface of said base substrate, a sound dampening material layer deposited over said adhesive interlayer and adhered to said base substrate by said adhesive layer, and a first conductive coating interposed between said adhesive layer and said base substrate; c) an electrochromic pane assembly comprising a first substrate having a second conductive coating on a surface thereof and a second substrate having a third conductive coating on a surface thereof, said first and said second substrates spaced from each other with said second and said third conductive coatings facing each other to define a chamber therebetween, said electrochromic pane assembly further comprising an electrochromic medium contained in said chamber, said electrochromic medium having a luminous transmittance that varies upon application of electrical current to said second and said third conductive coatings to establish an electrical potential through said electrochromic medium; and d) a spacer frame assembly for retaining said outboard pane assembly, said vibration dampening/sound absorbing pane assembly and said electrochromic pane assembly in spaced-apart generally parallel facing relationship with said vibration dampening/sound absorbing pane assembly positioned between said outboard pane assembly and said electrochromic pane assembly, said spacer frame assembly providing a first chamber between said outboard pane assembly and said vibration dampening/sound absorbing pane assembly and second chamber between said vibration dampening/sound absorbing pane assembly and said electrochromic pane assembly.
- 31. The window assembly according to claim 30, wherein said vibration dampening/sound absorbing pane assembly is retained by said spacer frame assembly with said sound dampening material layer disposed toward said outboard pane assembly.
- 32. The window assembly according to claim 30, further comprising facilities for applying electrical current to said first conductive coating to heat said first conductive coating and facilities for applying said electrical current to said second and third conductive coatings to vary the luminous transmittance of said electrochromic medium.
- 33. An electrochromic aircraft window assembly comprising:
a) an outboard pane assembly; and b) electrochromic pane assembly spaced from said outboard pane assembly and defining a chamber therebetween, said electrochromic pane assembly comprising:
i) a first substrate having first and second surfaces; ii) a second substrate having first and second surfaces, wherein said second surface of said first substrate is facing and spaced from said first surface of said second substrate, said first and second substrates forming a chamber of generally uniform thickness therebetween and further comprising a first conductive layer on said second surface of said first substrate and a second conductive layer on said first surface of said second substrate; iii) an electrochromic medium contained in said chamber and in contact with said conductive layers, said electrochromic medium having a luminous transmittance that varies upon application of an electrical potential through said electrochromic medium; iv) at least one additional assembly selected from a distortion reducing assembly, a fogging reducing assembly and a sound dampening assembly; and v) facilities for applying electrical current to said first and said second conductive layers to impress said electrical potential through said electrochromic medium and vary said luminous transmittance of said electrochromic medium.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/222,771 filed Aug. 3, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60222771 |
Aug 2000 |
US |