Polymeric multilayer optical film
US-10429558-B2 · Oct 1, 2019 · US
US11543572B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11543572-B2 |
| Application number | US-201816652626-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 28, 2018 |
| Priority date | Oct 10, 2017 |
| Publication date | Jan 3, 2023 |
| Grant date | Jan 3, 2023 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
Shaped optical films and methods of shaping optical films are described. The method includes securing at least portions of a perimeter of the optical film in a first plane so that the secured portions do not move relative to one another; and stretching the optical film by displacing a portion of the optical film along at least a first direction perpendicular to the first plane such that one of a radial and circumferential stretching of the optical film is substantially constant from a center to the perimeter of the optical film, and the other one of the radial and circumferential stretching of the optical film substantially changes from the center to the perimeter of the optical film. The optical film is a reflective polarizer including a plurality of alternating polymeric layers.
Opening claim text (preview).
What is claimed is: 1. A curved reflective polarizer comprising a plurality of alternating polymeric interference layers, each polymeric interference layer reflecting or transmitting light primarily by optical interference, at least one location on the curved reflective polarizer having a radius of curvature in a range from about 6 mm to about 1000 mm, wherein for light having a predetermined wavelength and incident on the reflective polarizer along a direction parallel to an axis normal to and passing through the reflective polarizer at a center location of the reflective polarizer, each location on the reflective polarizer has a maximum reflectance greater than about 70% for a block polarization state, a maximum transmittance greater than about 70% for an orthogonal pass polarization state, and a minimum transmittance for the block polarization state, such that for orthogonal first and second axes intersecting each other at the center location and orthogonal third and fourth axes intersecting each other at the center location, an angle between the first and third axes being about 45 degrees, the minimum transmittance of the reflective polarizer for the block polarization state: at a first location along the first axis between the center location and a first edge of the reflective polarizer is T1; at a second location along the second axis between the center location and a second edge of the reflective polarizer is T2; at a third location along the third axis between the center location and a third edge of the reflective polarizer is T3; and at a fourth location along the fourth axis between the center location and a fourth edge of the reflective polarizer is T4, wherein a maximum of T1 and T2 is less than a minimum of T3 and T4. 2. The curved reflective polarizer of claim 1 , wherein the minimum transmittance of the reflective polarizer for the block polarization state: at a fifth location along the first axis between the center location and a fifth edge, opposite the first edge, of the reflective polarizer is T5; at a sixth location along the second axis between the center location and a sixth edge, opposite the second edge, of the reflective polarizer is T6; at a seventh location along the third axis between the center location and a seventh edge, opposite the third edge, of the reflective polarizer is T7; and at an eighth location along the fourth axis between the center location and an eighth edge, opposite the fourth edge, of the reflective polarizer is T8, wherein a maximum of T1, T2, T5 and T6 is less than a minimum of T3, T4, T7 and T8. 3. The reflective polarizer of claim 1 , wherein the minimum transmittance of the reflective polarizer for the block polarization state is substantially symmetric under reflection about at least one of the first and second axes. 4. The curved reflective polarizer of claim 1 , wherein the minimum transmittance of the reflective polarizer for the block polarization state is substantially symmetric under reflection about each of the first and second axes. 5. The curved reflective polarizer of claim 1 , wherein the minimum transmittance of the reflective polarizer for the block polarization state is substantially 4-fold rotation symmetric about an optical axis passing through the center location of the reflective polarizer normal to the reflective polarizer. 6. The curved reflective polarizer of claim 1 , wherein for each location on the reflective polarizer, the minimum transmittance of the reflective polarizer for the block polarization state is less than 5 percent. 7. The curved reflective polarizer of claim 1 , wherein a thickness of the reflective polarizer is at least 5% larger at the center location than at at least one edge location of the reflective polarizer. 8. The curved reflective polarizer of claim 7 , wherein the thickness of the reflective polarizer substantially monotonically decreases from the center location to the at least one edge location. 9. The curved reflective polarizer of claim 1 , wherein for normally incident light having the block polarization state, the reflective polarizer has a reflection band having a long wavelength band edge, the predetermined wavelength being in the reflection band, the long wavelength band edge being at least 5% larger at the center location than at at least one edge location of the reflective polarizer. 10. The curved reflective polarizer of claim 9 , wherein the long wavelength band edge of the reflective polarizer substantially monotonically decreases from the center location to the at least one edge location. 11. A curved reflective polarizer comprising a plurality of alternating polymeric interference layers, each polymeric interference layer reflecting or transmitting light primarily by optical interference, at least one location on the curved reflective polarizer having a radius of curvature in a range from about 6 mm to about 1000 mm, for light having a predetermined wavelength, each location on the reflective polarizer having a maximum reflectance greater than about 70% for a block polarization state, a maximum transmittance greater than about 70% for an orthogonal pass polarization state, and a minimum transmittance for the block polarization state, such for orthogonal first and second axes intersecting each other at a center location of the reflective polarizer, the maximum transmittance of the reflective polarizer for the pass polarization state: at the center location is Tc; at a first edge location along the first axis near a first edge of the reflective polarizer is T1; at a second edge location along the first axis near a second edge, opposite the first edge, of the reflective polarizer is T2; at a third edge location along the second axis near a third edge of the reflective polarizer is T3; and at a fourth edge location along the second axis near a fourth edge, opposite the third edge, of the reflective polarizer is T4; wherein Tc is greater than a maximum of T1 and T2, and less than a minimum of T3 and T4. 12. The curved reflective polarizer of claim 11 , wherein the maximum transmittance is substantially symmetric under reflection about at least one of the first and second axes. 13. The curved reflective polarizer of claim 11 , wherein the maximum transmittance is substantially symmetric under reflection about each of the first and second axes. 14. The curved reflective polarizer of claim 11 , wherein a thickness of the reflective polarizer is at least 5% smaller at the center location than at at least one edge location of the reflective polarizer. 15. The curved reflective polarizer of claim 14 , wherein the thickness of the reflective polarizer substantially monotonically increases from the center location to the at least one edge location. 16. The curved reflective polarizer of claim 11 , wherein for normally incident light having the block polarization state, the reflective polarizer has a reflection band having a long wavelength band edge, the predetermined wavelength being in the reflection band, the long wavelength band edge being at least 5% smaller at the center location than at at least one edge location of the reflective polarizer. 17. The curved reflective polarizer of claim 16 , wherein the long wavelength band edge of the reflective polarizer substantially monotonically increases from the center location to the at least one edge location. 18. A curved reflective polarizer comprising a plurality of alternating polymeric interference layers, each polymeric interference layer reflecting or transmitting light primarily by optical i
comprising a refractive element with a reflective surface, the reflection taking place inside the element, e.g. Mangin mirrors · CPC title
using dichroic mirrors · CPC title
cascade of polarisation selective or adjusting operations · CPC title
comprising multiple thin layers, e.g. multilayer stacks · CPC title
including organic materials, e.g. polymeric layers · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.