B32B2383/00

Color conversion film and light source unit including the same, display, and lighting apparatus

A color conversion film converts incident light into light with a wavelength longer than that of the incident light. The color conversion film is a laminate film including the following Layer(A) and Layer (B): Layer (A): a color conversion layer as a continuous layer containing at least one organic light-emitting material and a binder resin; and Layer (B): a transparent resin layer with an oxygen permeability of 1.0 cc/m.sup.2.Math.day.Math.atm or less.

UNDERCOAT LAYER-FORMING COMPOSITION, UNDERCOAT LAYER, AND COATING FILM

An object of the present invention is to provide a coating film that can be peeled in a sheet form, facilitates removal work and is less likely to be peeled even if used in an underwater structure for a long period of time, and an undercoat layer-forming composition for forming an undercoat layer of the coating film. The present invention relates to an undercoat layer-forming composition for forming an undercoat layer of a coating film including the undercoat layer and an antifouling layer which contains a silicone oil and is adhered to the undercoat layer, wherein the undercoat layer-forming composition contains a base polymer and a tackifying resin.

METHOD FOR PRODUCING SUBSTRATE HAVING HARD COAT LAYER CONTAINING FUNCTIONAL FINE PARTICLES
20210008851 · 2021-01-14 · ·

An object of the present invention is to provide a method for producing a substrate with a hard coat layer that can maintain the properties of the functional fine particles for a long period of time even under a severe use environment and has excellent wear resistance. A method for producing a substrate with a hard coat layer characterized by comprising (1) providing a semi-cured hard coat layer consisting mainly of a resin on the substrate, satisfying the following formula (a): 12X600 (a), wherein X indicates time in second required for the (A) haze of the glass with the semi-cured hard coat layer to exceed 5%, when the glass with the semi-cured hard coat layer is obtained by layering a 10 m-thick, semi-cured hard coat layer on one side of 3 mm-thick float-processed soda glass; and then thus obtained glass with the semi-cured hard layer is immersed in an N-methylpyrrolidone solvent in an environment of 40 C., (2) applying a dispersion in which functional fine particles are dispersed in a dispersion solvent satisfying the following formula (b) on the semi-cured hard coat layer: 12 X(A+0.2).sup.290 (b), wherein X denotes X described in the formula (a), A denotes the difference between the solubility parameter of the dispersion solvent inMPa.sup.0.5 unit and the solubility parameter of N-methylpyrrolidone (22.3 MPa.sup.0.5), and (3) curing the semi-cured hard coat layer completely.

Laminated glass

The present invention is a laminated glass which is prepared by inserting a resin intermediate film between glass plates and adhering the glass plates to integrate them, having a bending deflection at 90 C. is 7.3 N/mm.sup.2 or higher, a weight per unit area is 7.5 kg/m.sup.2 or less, wherein the resin intermediate film contains a modified hydrogenated block copolymer [E] obtained by introducing an alkoxysilyl group into a hydrogenated block copolymer [D], storage elastic moduli in the dynamic viscoelastic properties of the resin intermediate film are 510.sup.8 Pa or lower at a temperature of 20 C. and 210.sup.7 Pa or higher at a temperature of 90 C., and the hydrogenated block copolymer [D] is obtained by hydrogenating 90% or more of carbon-carbon unsaturated bonds on a main chain and side chains and carbon-carbon unsaturated bonds on an aromatic ring in a specific block copolymer [C].

Segmented protective display film

A display film comprises a transparent glass layer including two or more co-planar glass layer segments and a thickness defined by a first major surface and a second major surface opposing the first major surface being less than 500 micrometers; interstitial polymer material separating adjacent segments; and transparent energy dissipation layer having a glass transition temperature of 27 degrees Celsius or less and a Tan Delta peak value of 0.5 or greater and being disposed on the first major surface.

ANTIGLARE HARDCOAT MULTILAYER FILM
20200398541 · 2020-12-24 · ·

One embodiment relates to a hardcoat multilayer film, which includes a first hardcoat and a transparent resin film layer in this order from the surface layer side, where the first hardcoat has been formed from a coating material that includes (A) 100 parts by mass of a copolymer of (a1) a polyfunctional (meth)acrylate and (a2) a polyfunctional thiol, (B) 0.01-7 parts by mass of a water repellent, and (C) 0.1-10 parts by mass of fine resin particles having an average particle diameter of 0.5-10 and that contains no inorganic particles. Another embodiment relates to a hardcoat multilayer film, which includes a first hardcoat and a transparent resin film layer in this order from the surface layer side, where the first hardcoat has been formed from a coating material that includes (A) a copolymer of (a1) a polyfunctional (meth)acrylate and (a2) a polyfunctional thiol, (B) a water repellent, and (C) fine resin particles having an average particle diameter of 0.5-10 m and that contains no inorganic particles, and which satisfies given requirements concerning abrasion resistance, total light transmittance, and the Y value of the XYZ color system based on a 2-degree field of view.

HARDCOAT FILM, ARTICLE AND IMAGE DISPLAY DEVICE HAVING HARDCOAT FILM, AND METHOD FOR MANUFACTURING HARDCOAT FILM

A hardcoat film includes a substrate; a hardcoat layer; and an anti-scratch layer, where the hardcoat layer includes a cured product of polyorganosilsesquioxane, the polyorganosilsesquioxane has a siloxane constitutional unit containing a (meth)acryloyl group and a siloxane constitutional unit containing an epoxy group and is represented by the General Formula (1), a film thickness of the anti-scratch layer is 0.05 to 5 m, and the anti-scratch layer includes a cured product of a compound having two or more (meth)acryloyl groups in one molecule, where Ra represents a group containing a (meth)acryloyl group; Rb represents a group containing an epoxy group; Rc represents a monovalent substituent; p, q, and r represent a proportion of Ra, Rb, and Rc in the General Formula (1) respectively; p+q+r is 100; p and q are greater than 0; r is equal to or greater than 0; p/q is 0.01 to 99.

POLYMERIC MULTILAYER FILM
20200384742 · 2020-12-10 ·

Polymeric multilayer film having first and second opposed major surfaces, comprising at least one layer comprising a first release agent and exhibiting a random network of strands and connective regions. The polymeric multilayer films are useful, for example, for tape and graphic articles.

MOISTURE BARRIER FILM, MOISTURE BARRIER DEVICE INCLUDING THE SAME AND METHOD FOR PREPARING MOISTURE BARRIER DEVICE
20200369833 · 2020-11-26 ·

A moisture barrier film, a moisture barrier device including the same and a method for preparing the moisture barrier device is provided. The moisture barrier film includes a hydrophobic modifying layer adapted to be formed on a substrate. The hydrophobic modifying layer is formed by solidification of a colloidal solution which includes a product obtained by subjecting a first trialkoxysilane having a hydrophobic group to a hydrolysis and condensation reaction with at least one of a second trialkoxysilane having a reactive group or a tetraalkoxysilane to form a polysilsesquioxane mixture, and subjecting the polysilsesquioxane mixture to modification with a metal source.

DISPLAY APPARUTUS AND MANUFACTURING METHOD THEREOF
20200363677 · 2020-11-19 · ·

Disclosed embodiment provides a display apparatus including a polysiloxane layer formed by using a polysiloxane containing a pigment on the surface of an aluminum oxide layer of a display apparatus chassis. A display apparatus according to an embodiment includes: a display panel; and a chassis disposed on the outside of the display panel, and the chassis includes an aluminum oxide layer; and a polysiloxane layer disposed on the aluminum oxide layer, on its surface.