MULTILAYER PROTECTIVE FILM
The present disclosure relates to a multilayer protective film that may include a multilayer component and a release liner component underlying the multilayer component. The multilayer component may have a first PET layer overlying a second PET layer. The multilayer protective film may further have a thickness ratio MPF T :RL T of not greater than about 14:1, where MPF T is equal to the thickness of the multilayer component and RL T is equal to the thickness of the release liner component.
1 . A multilayer protective film comprising:
a multilayer component comprising a first PET layer overlying a second PET layer; and
a release liner component underlying the multilayer component,
wherein the multilayer protective film has a thickness ratio MPF T :RL T of not greater than about 14:1, where MPF T is equal to the thickness of the multilayer component and RL T is equal to the thickness of the release liner component.
2 . The multilayer protective film of claim 1 , wherein the multilayer protective film has a thickness ratio MPF T :RL T of not greater than about 14:1, where MPF T is equal to the average thickness of the multilayer component and RL T is equal to the average thickness of the release liner component.
3 . The multilayer protective film of claim 1 , wherein the multilayer protective film has a thickness ratio MPF T :RL T of at least about 1:7, where MPF T is equal to the average thickness of the multilayer component and RL T is equal to the average thickness of the release liner component.
4 . The multilayer protective film of claim 1 , wherein the multilayer protective film has a thickness ratio PET-1 T :RL T of not greater than about 4:1.
5 . The multilayer protective film of claim 1 , wherein the multilayer protective film has a thickness ratio PET-1 T :RL T of at least about 1:10, where PET-1 T is equal to the average thickness of the first PET layer of the multilayer component and RL T is equal to the average thickness of the release liner component.
6 . The multilayer protective film of claim 1 , wherein the release liner component has a thickness of at least about 35 microns.
7 . The multilayer protective film of claim 1 , wherein the release liner component has a thickness of not greater than about 300 microns.
8 . The multilayer protective film of claim 1 , wherein the multilayer protective film has an edge delamination time rating of at least about 10 hrs.
9 . The multilayer protective film of claim 1 , wherein the multilayer protective film has an edge delamination thickness rating of not greater than about 1.6 mm.
10 . The multilayer protective film of claim 1 , wherein the multilayer protective film has an edge optical distortion ratio EOD:COD of not greater than about 2:1, where EOD is equal to the optical distortion of the multilayer protective film measured within 1 inch of an outer edge of the multilayer protective film and COD is equal to the optical distortion of the multilayer protective film measured at the center of the multilayer protective film.
11 . The multilayer protective film of claim 1 , wherein the release liner component comprises a substrate component, and a release coating component attached to the substrate component and between the substrate component and the multilayer component.
12 . The multilayer protective film of claim 11 , wherein the substrate component comprises PET, polycarbonate, polyethylene variations, HDPE, LDPE, paper, fluoropolymer, ETFE, FEP or combinations thereof.
13 . The multilayer protective film of claim 12 , wherein the substrate component has a thickness of at least about 25 microns.
14 . A method of forming a multilayer protective film, wherein the method comprises:
providing a multilayer component comprising a first PET layer overlying a second PET layer; and
applying a release liner component to the multilayer component,
wherein the multilayer protective film has a thickness ratio MPF T :RL T of not greater than about 14:1, where MPF T is equal to the thickness of the multilayer component and RL T is equal to the thickness of the release liner component.
15 . The method of claim 14 , wherein the multilayer protective film has a thickness ratio MPF T :RL T of not greater than about 14:1, where MPF T is equal to the average thickness of the multilayer component and RL T is equal to the average thickness of the release liner component.
16 . The method of claim 14 , wherein the multilayer protective film has a thickness ratio MPF T :RL T of at least about 1:7, where MPF T is equal to the average thickness of the multilayer component and RL T is equal to the average thickness of the release liner component.
17 . The method of claim 14 , wherein the multilayer protective film has a thickness ratio PET-1 T :RL T of not greater than about 4:1.
18 . The method of claim 14 , wherein the multilayer protective film has a thickness ratio PET-1 T :RL T of at least about 1:10, where PET-1 T is equal to the average thickness of the first PET layer of the multilayer component and RL T is equal to the average thickness of the release liner component.
19 . The method of claim 14 , wherein the release liner component has a thickness of at least about 35 microns.
20 . A pre-cut multilayer protective window film comprising:
a multilayer component comprising a first PET layer overlying a second PET layer; and
a release liner component underlying the multilayer component,
wherein the multilayer protective film has a thickness ratio MPF T :RL T of not greater than about 14:1, where MPF T is equal to the thickness of the multilayer component and RL T is equal to the thickness of the release liner component,
wherein the pre-cut multilayer protective window film has a pre-cut length of at least about 100 mm and not greater than about 3500 mm, and
wherein the pre-cut multilayer protective window film has a pre-cut width of at least about 100 mm and not greater than about 3500 mm.