A low-emissivity multilayer coating includes, in order outward from the substrate, a first layer including a layer containing titanium oxide, a layer containing silicon nitride, or a sublayer layer containing titanium oxide in combination with a sublayer containing silicon 5 nitride, a second layer
A low-emissivity multilayer coating includes, in order outward from the substrate, a first layer including a layer containing titanium oxide, a layer containing silicon nitride, or a sublayer layer containing titanium oxide in combination with a sublayer containing silicon 5 nitride, a second layer including Ag, a third layer including at least one layer selected from titanium oxide layers and silicon nitride layers, a fourth layer including Ag, and a fifth layer including silicon nitride, where the color of the coatings can be varied over a wide range by controlling the thicknesses of the layers of titanium oxide, silicon nitride and Ag.
대표청구항▼
1. A low-emissivity coating on a substrate, the coating comprising, in numerical order outward from the substrate, a first layer including at least one layer selected from titanium oxide layers and silicon nitride layers;a second layer including Ag;a third layer including at least one layer selected
1. A low-emissivity coating on a substrate, the coating comprising, in numerical order outward from the substrate, a first layer including at least one layer selected from titanium oxide layers and silicon nitride layers;a second layer including Ag;a third layer including at least one layer selected from titanium oxide layers and silicon nitride layers;a fourth layer including Ag; anda fifth layer including silicon nitride, whereinat least one of the second layer and the fourth layer consists of, in numerical order outward from the substrate, a first sublayer, which includes a zinc oxide and which is from 6 to 7 nm thick;a second sublayer, which includes Ag; anda third sublayer, which includes a first oxidized metal. 2. The coating according to claim 1, wherein the first layer is from 5 to 30 nm thick. 3. The coating according to claim 1, wherein the first layer includes a titanium oxide layer; andthe titanium oxide in the first layer is amorphous. 4. The coating according to claim 1, wherein the third layer comprises at least one of a TiO2 layer and a Si3N4 layer. 5. The coating according to claim 1, wherein the third layer comprises a superlattice of titanium oxide and silicon nitride. 6. The coating according to claim 1, wherein the zinc oxide comprises nitrogen. 7. The coating according to claim 1, wherein the first oxidized metal comprises an at least partially oxidized Ni—Cr alloy. 8. The coating according to claim 1, wherein the Ag in at least one of the second layer and the fourth layer further comprises at least one of oxygen and nitrogen. 9. The coating according to claim 1, wherein at least one of the first layer, the second layer, the third layer, and the fourth layer is divided by a layer of a second oxidized metal. 10. The coating according to claim 9, wherein the second oxidized metal is an at least partially oxidized Ni—Cr alloy. 11. The coating according to claim 1, wherein the silicon nitride comprises less than a stoichiometric amount of nitrogen. 12. The coating according to claim 1, wherein the first layer includes a layer of SiNx, where 0
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이 특허에 인용된 특허 (122)
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