Abstract:
Provided is a method for making a privacy film. In the method, a nickel mold having desired intagliated patterns are prepared, and a curable resin is then injected into the nickel mold to prepare a master mold. A UV curable resin is injected into the master mold, and then cured to thereby form a film where uneven patterns are formed. A black ink is injected into a concave portion of the film. The method provides advantages such as process simplicity, excellent production efficiency, and low fabrication cost.
Abstract:
A method of printing fine patterns prints a fine pattern on a substrate using an elastic mold with an intaglio pattern. This method includes applying a fine pattern printing ink to a surface of a patterned elastic mold; removing the ink applied to an embossed portion of the elastic mold by closely adhering an ink removing unit having a polymer resin or an organic compound with a surface energy from to to the surface of the elastic mold and then detaching the ink removing unit therefrom; and closely adhering the elastic mold to a substrate to transcribe the printing ink thereto. This method allows forming a fine pattern with good quality since the ink applied to the embossed portion of the elastic mold may be effectively removed during a gravure process.
Abstract translation:打印精细图案的方法使用具有凹版图案的弹性模具在基板上印刷精细图案。 该方法包括将精细图案印刷油墨施加到图案化的弹性模具的表面上; 通过将具有聚合物树脂或有机化合物的除油单元紧密地粘附到具有从表面能的能量从表面能-2000g / cm 2>到表面能的方法去除施加到弹性模具的压花部分上的油墨 的墨水+ erg / cm 3到弹性模具的表面,然后从其中分离除墨单元; 并将弹性模具紧密地粘合到基底上以将印刷油墨转印到其上。 该方法允许形成具有良好质量的精细图案,因为在凹版印刷工艺期间可以有效地去除施加到弹性模具的压花部分的油墨。
Abstract:
A method of removing a portion of an oxide layer includes forming first byproducts by reacting a reaction gas with the oxide layer, the reaction gas including fluorine and nitrogen, reacting the reaction gas with the first byproducts to form second byproducts, and removing the second byproducts.
Abstract:
The present invention relates to a silicone-based coating composition with middle and high refractive index, a method of preparing the same, and an optical lens prepared therefrom, and more specifically to a silicone-based coating composition including organosilanes, inorganic oxides having a refractive index of from 1.7 to 3.0, an aluminum acetyl acetone, a C1-C5 alkyl cellosolve, and a solvent, a method of preparing the same, and an optical lens prepared therefrom. The siloxane-based coating composition is transparent, not sticky, and stable for long time storage. Therefore, the coating composition can be applied to a coating layer on a surface of a plastic lens such as an optical lens, an industrial safety lens, or goggles for leisure.
Abstract:
A method and resultant device, in which metal nanoparticles are self-assembled into two-dimensional lattices. A periodic hole pattern (wells) is fabricated on a photoresist substrate, the wells having an aspect ratio of less than 0.37. The nanoparticles are synthesized within inverse micelles of a polymer, preferably a block copolymer, and are self-assembled onto the photoresist nanopatterns. The nanoparticles are selectively positioned in the holes due to the capillary forces related to the pattern geometry, with a controllable number of particles per lattice point.
Abstract:
The present invention relates to a touch panel comprising a structure body comprising: a substrate; a conducting pattern that is provided on at least one surface of the substrate; and a light absorption pattern provided on at least one surface of the conducting pattern and provided on at least a portion of regions corresponding to the conducting pattern, and a method for manufacturing the same.
Abstract:
Disclosed are an apparatus for measuring a position of a probe for an inclinometer, and a probe. The apparatus for measuring a position of a probe for an inclinometer comprises: a probe connection unit; a cable connection unit; a storage unit; a power supply unit; a magnetic field generator; a rotational number calculation unit, and a probe position calculation unit.
Abstract:
An exemplary embodiment of the present invention relates to a conductive structure body that comprises a darkening pattern layer having AlOxNy, and a method for manufacturing the same. The conductive structure body according to the exemplary embodiment of the present invention may prevent reflection by a conductive pattern layer without affecting conductivity of the conductive pattern layer, and improve a concealing property of the conductive pattern layer by improving absorbance.Accordingly, a display panel having improved visibility may be developed by using the conductive structure body according to the exemplary embodiment of the present invention.
Abstract translation:本发明的示例性实施例涉及一种导电结构体,其包括具有AlO x N y的变暗图案层及其制造方法。 根据本发明的示例性实施例的导电结构体可以防止导电图案层的反射而不影响导电图案层的导电性,并且通过改善吸光度来改善导电图案层的隐蔽性。 因此,可以通过使用根据本发明的示例性实施例的导电结构体来开发具有改善的可视性的显示面板。
Abstract:
An exemplary embodiment of the present invention relates to a conductive structure body that comprises a darkening pattern layer having AlOxNy, and a method for manufacturing the same. The conductive structure body according to the exemplary embodiment of the present invention may prevent reflection by a conductive pattern layer without affecting conductivity of the conductive pattern layer, and improve a concealing property of the conductive pattern layer by improving absorbance. Accordingly, a display panel having improved visibility may be developed by using the conductive structure body according to the exemplary embodiment of the present invention.
Abstract translation:本发明的示例性实施例涉及一种导电结构体,其包括具有AlO x N y的变暗图案层及其制造方法。 根据本发明的示例性实施例的导电结构体可以防止导电图案层的反射而不影响导电图案层的导电性,并且通过改善吸光度来改善导电图案层的隐蔽性。 因此,可以通过使用根据本发明的示例性实施例的导电结构体来开发具有改善的可视性的显示面板。
Abstract:
Provided are a composition for printing for use in a printing method which uses a silicon-based blanket, including: 1) a binder resin, 2) a low boiling point solvent having a boiling point of less than 100° C., 3) a medium boiling point solvent having a boiling point of 100° C. or more and less than 180° C., and 4) a high boiling point solvent having a boiling point of 180° C. or more, wherein the medium boiling point solvent and the high-boiling solvent have a difference in solubility parameter with the binder resin of 3 (cal·cm)1/2 or less, a difference in solubility parameter with the silicon-based blanket of 4 (cal·cm)1/2 or more, and a swelling parameter for the silicon-based blanket of 2 or less, and a printing method using the same.