Claims
- 1. A diffuse reflective article comprising a diffuse reflective material proximate to a structure wherein said diffuse reflective material is made of a porous polyolefin sheet comprising a network of polymer domains and fibrils interconnecting the domains, the porous polyolefin sheet comprising a first surface having a surface element configured to reduce optical coupling with the structure.
- 2. A diffuse reflective article comprising a diffuse reflective material proximate to a structure wherein said diffuse reflective material is made of a porous polymeric sheet comprising a network of polymeric material having voids therein which material comprises:
(a) a polymer component, and (b) a diluent component, said diluent component being miscible with the polymer component at a temperature above the melting point of the polymer component or a liquid-liquid phase separation temperature of a total solution of polymer and diluent; wherein the porous polymeric sheet comprises a first surface having a surface element configured to reduce optical coupling with the structure.
- 3. The diffuse reflective article of claim 2 wherein the porous polymeric sheet has a reflectivity greater than 92% at a wavelength of 550 nm according to ASTM E 1164-94 using a spectrophotometer with an integrating sphere.
- 4. The article of claim 2, wherein the polymeric material comprises:
(a) at least 20 parts by weight of the polymer component; and (b) less than about 80 parts by weight of the diluent component.
- 5. The article of claim 2, wherein the polymer component is substantially non-absorbing to light at a wavelength between 380 and 730 nanometers.
- 6. The article of claim 2, wherein the polymer component is selected from the group consisting of polypropylene and polyethylene.
- 7. The article of claim 2, wherein the diluent component is substantially non-absorbing to light at a wavelength between 380 and 730 nanometers.
- 8. The article of claim 2, wherein the diluent component is mineral oil.
- 9. The article of claim 2, further comprising a specular reflective layer in combination with the porous polymeric layer.
- 10. The article of claim 2, wherein the structure is an optical cavity with the diffuse reflective material lining a portion of the cavity facing a light source.
- 11. The article of claim 10, wherein the optical cavity is in combination with a partially transparent image in which said image is a liquid crystal display.
- 12. The article of claim 2, wherein:
the structure comprises an optical cavity and light source positioned proximate the optical cavity; and the diffuse reflective article is configured to line a portion of the cavity and partially wrap around the light source so as to direct light from the light source into the optical cavity.
- 13. The article of claim 12, wherein the optical cavity includes a light guide.
- 14. The article of claim 2, wherein the article is incorporated into a liquid crystal display.
- 15. The article according to claim 12, wherein the diffuse reflective article partially enclosing the light source reflects light into the light guide.
- 16. The article of claim 12 wherein the optical cavity is in combination with a brightness enhancement film.
- 17. The article of claim 12, wherein the optical cavity is in combination with a reflective polarizer film.
- 18. The article of claim 2, wherein the structure is a sign cabinet comprising walls and a light source, wherein at least one of the walls is lined with the diffuse reflective material.
- 19. The article of claim 2, wherein the structure is a light conduit comprising an optical lighting film, at least one of a back reflector and an extractor, wherein the back reflector, the extractor or both comprise the diffuse reflective material.
- 20. The article of claim 2, wherein the diffuse reflective article comprises a fluorescent compound.
- 21. A method of improving diffuse reflectivity of light comprising using a diffuse reflective material to cause light energy to reflect off of it, wherein the material comprises a porous polymeric sheet containing at least one surface element positioned to reduce optical coupling with a substrate, the sheet comprising a network of polymeric material having voids therein which material comprises:
(a) a polymer component, and (b) a diluent component, said diluent component being miscible with the polymer component at a temperature above the melting point of the polymer component or a liquid-liquid phase separation temperature of a total solution of polymer and diluent.
- 22. The method of claim 21, wherein the polymer component is selected from the group consisting of polypropylene and polyethylene.
- 23. The method of claim 21, wherein the diluent component is mineral oil.
- 24. A method of making an article comprising a diffuse reflective material configured for positioning proximate to a structure, the method comprising:
providing a polymer component; providing a diluent component, said diluent component being miscible with the polymer component at a temperature above the melting point of the polymer component or liquid-liquid phase separation temperature of the total solution of polymer and diluent; combining the polymer component and diluent component to form a porous polymeric sheet having a first thickness; and applying a force to the porous polymeric sheet to form a sheet having a second thickness.
- 25. The method of making an article according to claim 24, wherein the step of applying a force to the porous polymeric sheet comprises applying a mechanical force.
- 26. The method of making an article according to claim 24, wherein the step of applying a force to the porous polymeric sheet comprises calendering the porous polymeric sheet.
- 27. The method of making an article according to claim 24, wherein the article has a second thickness that 70 to 85 percent of the first thickness.
- 28. The method of making an article according to claim 24, wherein the article has a second thickness of from 150 to 300 μm.
- 29. The method of making an article according to claim 24, wherein the article has one or more elements configured to reduce optical coupling with a substrate.
- 30. A reflective article comprising a reflective material proximate to a structure, wherein the reflective article comprises a first surface having a surface element configured to reduce optical coupling with the structure.
- 31. The reflective article of claim 30, wherein the reflective article is a specular reflector.
- 32. The reflective article of claim 30, wherein the reflective article is a diffuse reflector.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation-in-part of Application Ser. No. 08/957,558, incorporated herein by reference in its entirety.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09368302 |
Aug 1999 |
US |
Child |
10274339 |
Oct 2002 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
08957558 |
Oct 1997 |
US |
Child |
09368302 |
Aug 1999 |
US |