Claims
- 1. A color shifting pigment composition, comprising:
a pigment medium; and a plurality of color shifting multilayer interference flakes dispersed in the pigment medium, each of the interference flakes comprising: a first carbon layer; a first dielectric layer overlying the first carbon layer; and a second carbon layer overlying the first dielectric layer; wherein the first dielectric layer has an optical thickness at a design wavelength that provides a color shift to the flakes as the angle of incident light or viewing angle changes.
- 2. The pigment composition of claim 1, wherein the pigment medium comprises a material selected from the group consisting of acrylic melamine, urethanes, polyesters, vinyl resins, acrylates, methyl methacrylate, ABS resins, epoxies, styrenes, ink and paint formulations based on alkyd resins, and mixtures thereof.
- 3. The pigment composition of claim 1, wherein the first and second carbon layers each have a physical thickness from about 25 Å to about 1000 Å.
- 4. The pigment composition of claim 1, wherein the first dielectric layer has an optical thickness from about 2 QWOT to about 9 QWOT at a design wavelength from about 400 nm to about 700 nm.
- 5. The pigment composition of claim 1, wherein the first dielectric layer comprises a material selected from the group consisting of silicon dioxide, aluminum oxide, magnesium fluoride, aluminum fluoride, cerium fluoride, lanthanum fluoride, sodium aluminum fluorides, neodymium fluoride, samarium fluoride, barium fluoride, calcium fluoride, lithium fluoride, and combinations thereof.
- 6. The pigment composition of claim 1, wherein the first dielectric layer comprises a material selected from the group consisting of acrylates, polymeric perfluoroalkenes, polytetrafluoroethylene, polymeric fluorinated ethylene propylene, parylene, and combinations thereof.
- 7. The pigment composition of claim 1, wherein the first dielectric layer comprises a material selected from the group consisting of zinc sulfide, zinc oxide, zirconium oxide, titanium dioxide, indium oxide, indium-tin-oxide, tantalum pentoxide, ceric oxide, yttrium oxide, europium oxide, iron oxides, hafnium nitride, hafnium carbide, hafnium oxide, lanthanum oxide, magnesium oxide, neodymium oxide, praseodymium oxide, samarium oxide, antimony trioxide, silicon carbide, silicon nitride, silicon monoxide, selenium trioxide, tin oxide, tungsten trioxide, and combinations thereof.
- 8. The pigment composition of claim 1, wherein the first dielectric layer has an index of refraction from about 1.38 to about 2.3.
- 9. The pigment composition of claim 1, wherein the interference flakes further comprise a second dielectric layer overlying the first carbon layer, and a third dielectric layer overlying the second carbon layer.
- 10. The pigment composition of claim 9, wherein the first, second, and third dielectric layers have the same optical thickness.
- 11. The pigment composition of claim 9, wherein the first, second, and third dielectric layers are composed of the same material.
- 12. The pigment composition of claim 1, further comprising an additive material selected from the group consisting of lamellar pigments, non-lamellar pigments, high chroma platelets, highly reflective platelets, and mixtures thereof.
- 13. The pigment composition of claim 12, wherein the lamellar pigments are selected from the group consisting of aluminum flakes, graphite flakes, mica flakes, glass flakes, iron oxide flakes, boron nitride flakes, interference based TiO2 coated mica flakes, interference pigments based on multiple coated platelike silicatic substrates, metal-dielectric or all dielectric interference pigments, and mixtures thereof.
- 14. The pigment composition of claim 12, wherein the non-lamellar pigments are selected from the group consisting of inorganic pigments, aluminum powder, carbon black, ultramarine blue, cobalt based pigments, rutile or spinel based inorganic pigments, naturally occurring pigments, organic dyes or pigments, and mixtures thereof.
- 15. The pigment composition of claim 12, wherein the highly reflective platelets are MgF2/Al/MgF2 platelets, or SiO2/Al/SiO2 platelets.
- 16. The pigment composition of claim 1, wherein at least one of the carbon layers has a refractive index greater than about 1.5.
- 17. The pigment composition of claim 1, wherein at least one of the carbon layers has a ratio of refractive index to absorption coefficient from about 0.1 to about 1.
- 18. The pigment composition of claim 1, wherein the first and second carbon layers form a substantially continuous coating surrounding the first dielectric layer.
- 19. The pigment composition of claim 9, wherein the second and third dielectric layers form a substantially continuous coating surrounding the first and second carbon layers.
- 20. The pigment composition of claim 19, wherein the first and second carbon layers form a substantially continuous coating surrounding the first dielectric layer.
- 21. The pigment composition of claim 1, wherein the carbon layers comprise a material selected from the group consisting of graphite, vitreous carbon, amorphous carbon, diamond-like carbon, carbonaceous carbon, arc evaporated carbon, ion assisted carbon I, ion assisted carbon II, amorphous hydrogenated carbon, amorphous hydrogenated diamond-like carbon, and combinations thereof.
- 22. The pigment composition of claim 1, wherein the carbon layers comprise a carbon containing material formed by modification of a solid polymeric film selected from the group consisting of polyarylates, polyacrylonitrile, and parylene.
- 23. The pigment composition of claim 1, wherein the carbon layers comprise a carbon containing material selected from the group consisting of carbon compounds, silicon oxycarbide, SiOx containing carbon black, poco, and combinations thereof.
- 24. A color shifting multilayer interference structure, comprising:
a first carbon containing layer; a first dielectric layer overlying the first carbon containing layer; and a second carbon containing layer overlying the first dielectric layer; wherein the first dielectric layer has an optical thickness at a design wavelength that provides a color shift as the angle of incident light or viewing angle changes, and at least one of the carbon containing layers comprises a material selected from the group consisting of carbon compounds, silicon oxycarbide, SiOx containing carbon black, poco, carbonaceous carbon, arc evaporated carbon, ion assisted carbon I, ion assisted carbon 11, amorphous hydrogenated carbon, amorphous hydrogenated diamond-like carbon, a material formed by modification of a solid polymeric film, and combinations thereof.
- 25. The interference structure of claim 24, wherein the structure comprises a pigment flake.
- 26. The interference structure of claim 24, wherein the structure comprises a foil.
- 27. The interference structure of claim 24, wherein the first and second carbon containing layers form part of a substantially continuous coating surrounding the first dielectric layer.
- 28. The interference structure of claim 24, further comprising a second dielectric layer overlying on the first carbon containing layer, and a third dielectric layer overlying the second carbon containing layer.
- 29. The interference structure of claim 28, wherein the second and third dielectric layers form part of a substantially continuous coating surrounding the first and second carbon containing layers.
- 30. The interference structure of claim 29, wherein the first and second carbon containing layers form part of a substantially continuous coating surrounding the first dielectric layer.
- 31. The interference structure of claim 24, wherein the material formed by modification of a solid polymeric film is selected from the group consisting of polyarylates, polyacrylonitrile, and parylene.
- 32. The interference structure of claim 31, wherein the solid polymeric film is modified by an energetic process selected from the group consisting of thermal pyrolysis, and ion bombardment.
- 33. A method of fabricating a color shifting interference pigment, comprising:
forming a first carbon layer over an upper surface of a web material; forming a first dielectric layer over the first carbon layer; forming a second carbon layer over the first dielectric layer to form an interference film; and removing the interference film from the web material in order to produce a plurality of multilayer interference flakes or foils.
- 34. The method of claim 33, further comprising forming a second dielectric layer over the second carbon layer, and forming a third carbon layer over the second dielectric layer prior to removing the interference film from the web material.
- 35. The method of claim 33, further comprising mixing the interference flakes with a pigment medium.
- 36. The method of claim 33, further comprising coating the interference flakes with a second dielectric layer that substantially surrounds both of the first and second carbon layers.
- 37. A method of fabricating a color shifting interference pigment, comprising:
forming a first layer of a carbon or dielectric material over an upper surface of a web material; removing the first layer from the web material in order to produce a plurality of flakes; coating the flakes with a second layer of a carbon or dielectric material that substantially surrounds the flakes, the second layer being a different material than the first layer.
- 38. The method of claim 37, further comprising mixing the coated flakes with a pigment medium.
- 39. The method of claim 37, further comprising coating the flakes with one or more additional layers of carbon or dielectric material that substantially surround the second layer.
Parent Case Info
[0001] This application is a divisional of application Ser. No. 09/420,717, filed on Oct. 20, 1999, which is incorporated herein by reference.
Divisions (1)
|
Number |
Date |
Country |
| Parent |
09420717 |
Oct 1999 |
US |
| Child |
10357143 |
Feb 2003 |
US |