Abstract:
In a display device, a cover window is capable of increasing transparency of a curved part to improve visibility of a screen and appearance quality of a product. The cover window for the display device includes at least one curved part. In addition, the curved part includes an outer surface formed in an arc having a curvature radius of r1 and an inner surface formed in an arc having a curvature radius of r2, where r1≦r2≦2r1.
Abstract:
Disclosed is a window for a display device that includes a first plastic substrate, a second plastic substrate disposed on one side of the first plastic substrate, and a bonding layer disposed between the first plastic substrate and second plastic substrate and bonding the first plastic substrate and the second plastic substrate, wherein the bonding layer has protrusions and depressions on a side in contact with the first plastic substrate.
Abstract:
A window for a display device, the window including a polymeric substrate, a polymeric layer disposed on a side of the polymeric substrate, and a binder layer interposed between the polymeric substrate and the polymer layer, wherein the binder layer includes a binder and a blue colorant.
Abstract:
A window for a display device includes a polymer resin layer including a polymer resin, and a light transmittance film positioned on at least one side of the polymer resin layer and including an adhesive film, the adhesive film including a same polymer resin as the polymer resin layer.
Abstract:
A window for a display device includes a polymer resin layer including a polymer resin having tensile elongation at break point of greater than or equal to about 20% and a melt flow rate (MFR) of greater than or equal to about 30 g/10 minutes (at 300° C.), and a light transmittance film positioned on at least one side of the polymer resin layer. The polymer resin layer has a thickness of about 30% or more, based on a total thickness of the polymer resin layer and the light transmittance film. A display device includes the window.
Abstract:
A method of processing a cover glass. The method includes forming mask layers on opposite surfaces of an original glass substrate for a display; cutting the original glass substrate into a plurality of unit glass substrates each including an opening; chemically etching exposed processing surfaces only by dipping the unit glass substrate in an etching solution; and removing the mask layers by dipping the unit glass substrate in a cleaning solution.
Abstract:
A window for a display device includes a polymer resin layer, and a light transmittance film positioned on at least one side of the polymer resin layer, wherein the light transmittance film layer includes a first plastic substrate, a second plastic substrate, and a buffer layer positioned between the first plastic substrate and the second plastic substrate, and a display device including the same.
Abstract:
A plastic window and an organic light-emitting display apparatus, the plastic window including a first layer; a second layer stacked on the first layer; and coating layers on a bottom surface of the first layer and on a top surface of the second layer, respectively, the top surface of the second layer facing a direction opposite to that of the bottom surface of the first layer, wherein the first layer and the second layer each include polyethylene terephthalate, and the first layer has the same thickness as the second layer.
Abstract:
A window for a display device includes a plastic substrate, a light transmittance resin layer positioned on one side of the plastic substrate and including a light transmittance resin having a thermal distortion temperature greater than or equal to about 90° C., and a binder layer positioned between the plastic substrate and the light transmittance resin layer and including a thermosetting resin and an isocyanate compound. A display device includes the window as described above.
Abstract:
A surface-protecting sheet is provided that includes a first plastic substrate including a thermoplastic resin and (meth)acrylic acid ester and a second plastic substrate disposed on one side of the first plastic substrate, wherein the first plastic substrate has a thickness of about 0.5 μm to about 25 μm, and the second plastic substrate has a thickness of about 10 μm to about 200 μm.