An array of aerodynamic riblets incorporates a high elongation elastomeric layer having spaced tips and optionally a protective cladding. The elastomeric layer may be adhered to an aerodynamic surface directly or as an appliqué in combination with one or more of an adhesive layer, one or more suppor
An array of aerodynamic riblets incorporates a high elongation elastomeric layer having spaced tips and optionally a protective cladding. The elastomeric layer may be adhered to an aerodynamic surface directly or as an appliqué in combination with one or more of an adhesive layer, one or more supporting polymer layers and a metal foil layer.
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1. A construction for an array of riblets comprising: a first layer composed of high elongation elastomeric riblets, providing recovery after deforming with elongation in a range of 300% to 3000%, having tips and a surface layer with an organic cladding deposited on the high elongation elastomeric r
1. A construction for an array of riblets comprising: a first layer composed of high elongation elastomeric riblets, providing recovery after deforming with elongation in a range of 300% to 3000%, having tips and a surface layer with an organic cladding deposited on the high elongation elastomeric riblets;a second layer for adherence to a surface. 2. The construction for an array of riblets as defined in claim 1 wherein: said second layer includes a supporting polymer layer. 3. The construction for an array of riblets as defined in claim 2 wherein the second layer includes an adhesive layer. 4. The construction for an array of riblets as defined in claim 2 further comprising an adhesive layer deposited on the polymer support layer to form a multilayer appliqué, said adhesive layer adhering the appliqué to the vehicle surface. 5. The construction for an array of riblets as defined in claim 1 wherein the second layer comprises an adhesive layer deposited on the surface layer, said adhesive layer adhering to a vehicle surface. 6. A construction for an array of riblets comprising: a first layer composed of high elongation elastomeric riblets, providing recovery after deforming with elongation in a range of 300% to 3000%, having tips and a surface layer with a cladding;an adhesive layer deposited on the surface layer, said adhesive layer adhering to a vehicle surface;a metallic layer and a polymer support layer intermediate the surface layer and the adhesive layer. 7. The construction for an array of rilets as defined in claim 6 wherein the metallic layer is discontinuous. 8. The construction for an array of riblets as defined in claim 1 wherein the high elongation elastomer is selected from the set of epoxy, polyurethane, polyurea, polyolefin, ethylene propylene, silicone, polybutadiene, polychloroprene, chlorinated polyethylene and fluorosilicones, fluorinated polyurethanes, perfluoropolyethers, sylilated polyurethanes, and other hybrid polymers that include polyhedral oligomeric silsesquioxane. 9. The construction for an array of riblets as defined in claim 1 wherein material for the high elongation elastomeric riblets is selected from the set of epoxy, polyurethane, polyurea, polyolefin, ethylene propylene, silicone, polybutadiene, polychloroprene, chlorinated polyethylene and fluorosilicones, fluorinated polyurethanes, perfluoropolyethers, sylilated polyurethanes, and other hybrid polymers that include polyhedral oligomeric silsesquioxane. 10. The array of riblets as defined in claim 1 wherein the cladding is UV reflective. 11. The array of riblets as defined in claim 1 wherein the organic cladding is selected from the set of thin films of parylene, PTFE, polyamide (Nylon), polyimide and polyethylene. 12. A construction for an array of riblets comprising: a first layer composed of high elongation elastomeric riblets, providing recovery after deforming with elongation in a range of 300% to 3000%, having tips and a surface layer;a second layer for adherence to a surface;a cladding on the high elongation elastomeric riblets wherein the cladding fractures within the elastic limit of the high elongation elastomer and wherein the cladding adheres to the elastomer subsequent to fracture. 13. The array of riblets as defined in claim 1 wherein the high elongation elastomeric tips have a parabolic cross section. 14. An aircraft structure comprising: an array of riblets having a plurality tips and a surface layer formed from a high elongation elastomeric material selected from the set of epoxy, polyurethane, polyurea, polyolefin, ethylene propylene, silicone, polybutadiene, polychloroprene, chlorinated polyethylene and fluorosilicones, fluorinated polyurethanes, perfluoropolyethers, sylilated polyurethanes, and other hybrid polymers that include polyhedral oligomeric silsesquioxane;a polymer support layer selected from the set of polyetheretherketone (PEEK), polyethereketoneketone (PEKK), polyetherketone(PEK), polyimide, polyamide, polyolefin, polyester, chloro- or fluoro-polymers such as polytetrafluoroethylene (PTFE), fluorinated ethylene propylene (FEP) or fluorinated polyurethane, polyethylene tetraphthalate (PET), silicones, epoxy, polysulfide, ethylene propylenediene, fluorosilicone, and fluoroelastomers;a cladding overlaying the tips and surface layer selected from the set of organic cladding including thin films of parylene, PTFE, polyamide (Nylon), polyimide and polyethylene;an adhesive layer deposited on the polymer support layer to form a multi layer appliqué, said adhesive layer adhering the appliqué to a surface of the aircraft.
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이 특허에 인용된 특허 (17)
Rawlings Diane C. ; Dull Dennis L., Appliques providing corrosion protection.
Rawlings, Diane C.; Keough, Bruce K.; Olli, Larry K.; Burg, Alan G.; Kestner, James M.; Granger, George Michael; McGarvey, James Charles, Multilayer riblet applique and methods of producing the same.
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