US2018178246A1PendingUtilityA1
Optical film
Assignee: 3M INNOVATIVE PROPERTIES COPriority: Jun 18, 2014Filed: Feb 2, 2018Published: Jun 28, 2018
Est. expiryJun 18, 2034(~7.9 yrs left)· nominal 20-yr term from priority
B05D 3/067G02B 5/0215G02B 5/3083G02B 1/04B05D 1/30B05D 1/40G02B 5/3041
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Claims
Abstract
An optical film including a thermoplastic birefringent multilayer optical film and a UV-cured layer disposed adjacent an outer layer of the multilayer optical film is described. The outer layer may a thickness in a range of about 0.3 micrometers to about 1.2 micrometers and the UV-cured layer includes a structured surface opposite the outer layer. The UV-cured layer may have a Tg less than about 30° C. and has a pencil hardness in a range of 2B to 2H.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . An optical film comprising:
a thermoplastic birefringent multilayer optical film including:
alternating first and second optical layers;
a first outer layer immediately adjacent the alternating first and second optical layers, the first outer layer having an outer major surface, the outer major surface an outermost major surface of the thermoplastic birefringent multilayer optical film;
wherein the first outer layer has a thickness of more than 3 micrometers; and
a UV-cured layer disposed adjacent the outer major surface, wherein the UV-cured layer includes a structured surface opposite the first outer layer, and the UV-cured layer has a pencil hardness in a range of 2B to 2H.
2 . The optical film of claim 1 , wherein the thickness of the first outer layer is no more than 1.2 micrometers.
3 . The optical film of claim 1 , wherein the thickness of the first outer layer is at least 0.3 micrometers.
4 . The optical film of claim 1 , wherein the thickness of the first outer layer is in a range of about 0.3 micrometers to about 1.2 micrometers.
5 . The optical film of claim 1 , wherein the thickness of the first outer layer is in a range of about 0.3 micrometers to about 1.0 micrometers.
6 . The optical film of claim 1 , wherein the UV-cured layer has a Tg less than about 30° C.
7 . The optical film of claim 1 , wherein the UV-cured layer has a Tg less than about 25° C.
8 . The optical film of claim 1 , wherein the UV-cured layer comprises a UV-cured urethane.
9 . The optical film of claim 8 , wherein the UV-cured urethane comprises a UV-cured aliphatic urethane acrylate.
10 . The optical film of claim 1 , where the thickness of the UV-cured layer is between about 2 micrometers and about 10 micrometers.
11 . The optical film of claim 1 , wherein the optical film is a reflective polarizer.
12 . The optical film of claim 1 , further comprising an absorbing polarizer disposed adjacent the thermoplastic birefringent multilayer optical film opposite the UV-cured layer, the absorbing polarizer having a first pass axis, wherein the thermoplastic birefringent multilayer optical film is a reflective polarizer having a second pass axis substantially parallel to the first pass axis.
13 . The optical film of claim 1 , wherein the optical film has no visible cracks following mandrel bend testing with a mandrel having a diameter of 8 mm.
14 . The optical film of claim 1 , wherein at least one of the alternating first and second optical layers are oriented birefringent polymer layers.
15 . The optical film of claim 1 , wherein the first outer layer includes the same material as either the first or second optical layer.
16 . The optical film of claim 1 , wherein the first outer layer includes a protective boundary layer adjacent the alternating first and second optical layers and a skin layer adjacent the protective boundary layer opposite the alternating first and second optical layers.
17 . The optical film of claim 1 , wherein the structured surface is a microstructured surface.
18 . The optical film of claim 1 , wherein the UV-cured layer is a substantially surface-scattering layer.
19 . The optical film of claim 1 , wherein a surface haze of the UV-cured layer is at least about 75 percent of a total haze of the optical film.
20 . A display comprising the optical film of claim 1 .Join the waitlist — get patent alerts
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