Abstract:
The present disclosure relates to a method of preparing an antimicrobial glass, which includes: preparing a glass substrate; preparing a dry paste; selectively coating the dry paste at least a portion of the glass substrate; heat-treating the coated glass substrate after the coating; and cleaning the heat -treated glass substrate, wherein the preparation of the dry paste includes preparing a diluted solution by diluting a salt including silver ions or copper ions in water, and adding a metal oxide to the diluted solution, and an antimicrobial glass prepared according to the method.
Abstract:
A cover window, a manufacturing method of a cover window, and a display device including a cover window are provided. A cover window includes a folding portion and a non-folding portion, and the folding portion includes an inside surface that is compressed when folded and an outside surface that is stretched when folded, the folding portion includes a first layer adjacent to the outside surface, a second layer adjacent to the inside surface, and a third layer between the first layer and the second layer, the folding portion and the non-folding portion include at least one metal ion, a concentration of the metal ion included in the second layer is higher than a concentration of the metal ion included in the first layer, and the first layer includes a plurality of depletion regions.
Abstract:
A glass substrate chemical strengthening furnace apparatus includes a bottom portion and a side wall extending from an edge of the bottom portion, where the bottom portion and the side wall define a reaction space; and a plurality of heaters providing heat to the reaction space. The bottom portion includes an inclined portion located at a center and a collection portion disposed between the inclined portion and the side wall, the collection portion is in a groove shape in which an upper surface thereof is further recessed than the inclined portion, and the plurality of heaters includes a bottom heater disposed in the bottom portion or adjacent to the bottom portion.
Abstract:
An embodiment provides a chemical strengthening system, including: a strengthening part in which chemical strengthening of a glass plate is performed; a heating part in which a post-heat treatment of the glass plate is performed; and a cassette in which the glass plate is loaded and which is movable between the strengthening part and the heating part. The cassette includes a lower support which supports a lower end portion of the glass plate, the lower support is rotatable with respect to an axis of rotation, and the axis of rotation does not move relatively within the cassette.
Abstract:
A glass article includes: a glass phase including a first structure in which a silicon atom is covalently bonded to four first oxygen atoms; and a plurality of crystals dispersed in the glass phase. The crystals include beta-quartz crystals, each of the beta-quartz crystals includes the first structure and a second structure in which aluminum is covalently bonded to four second oxygen atoms, and a crystallinity of the beta-quartz crystals is in a range of about 40% to about 50%.
Abstract:
A method of manufacturing strengthened glass includes: preparing glass including blocking patterns on a surface thereof, portions of the surface exposed between the blocking patterns; forming a metal particle layer on the portions of the surface of the glass exposed between the blocking patterns; removing the blocking patterns from the surface of the glass, to maintain the metal particle layer on the surface of the glass; with the metal particle layer maintained on the surface of the glass, etching the surface of the glass using the metal particle layer as an etching mask to form an etched surface of the glass, such etched surface including protruding patterns spaced apart from each other by portions of a common reference surface; and chemically strengthening the etched surface of the glass at the protruding patterns and at the reference surface.
Abstract:
A float glass includes a core layer, an upper ion exchange layer disposed on the core layer, and a lower ion exchange layer disposed below the core layer, where a density of the upper ion exchange layer is about 0.001 kilogram per cubic meter (kg/m3) to about 0.01 kg/m3 greater than a density of the lower ion exchange layer.
Abstract:
A display device includes: a substrate; a first electrode on the substrate; a pixel defining layer on the first electrode; a light emitting layer on the first electrode and the pixel defining layer, a second electrode on the light emitting layer; an encapsulation layer on the second electrode; an adhesive layer on the encapsulation layer, a reinforcement layer on the adhesive layer, and a functional layer on the reinforcement layer.
Abstract:
A display device comprises a substrate; a first electrode on the substrate; a pixel-defining layer on the first electrode; an emissive layer on the first electrode and the pixel-defining layer; a second electrode on the emissive layer; an encapsulation layer on the second electrode; a functional layer on the encapsulation layer; and a reinforcement layer between the encapsulation layer and the functional layer, wherein an interface between the reinforcement layer and the functional layer is substantially flat.
Abstract:
A display device includes a display panel having a display area and a non-display area, a polarization layer on a first surface of the display panel and covering the display area and a portion of the non-display area adjacent to the display area, and a window directly on the polarization layer and covering the display area and the portion of the non-display area adjacent to the display area, the window including a curved portion on the portion of the non-display area.