Abstract:
The present invention provides an article having a water- and oil-repellent surface layer, as well as excellent water- and oil-repellent properties, abrasion resistance (resistance to abrasion by eraser), and slipperiness, said article being constituted from: a glass substrate; an underlayer formed upon the outer surface of the glass substrate and having a silicon oxide as the main component thereof; and a water- and oil-repellent surface layer formed upon the outer surface of the silicon oxide underlayer. The film density of the silicon oxide underlayer is 1.8-2.2 g/cm3. The water- and oil-repellent surface layer has, as the main component thereof: a fluoropolyether group-containing polymer having a hydrolyzable silyl group with a specific structure; and/or a cured product of a partially hydrolyzed condensate thereof.
Abstract:
A method for producing a substrate with a functional layer, the substrate with a functional layer including a substrate having a first main surface, second main surface, and end part, and a functional layer, the functional layer being formed on the first main surface and the end part, includes: laminating a resin base having an adhesive layer comprising a carbon-containing material, on at least a part of the second main surface of the substrate; and forming the functional layer by a dry deposition method. The resin base having the adhesive layer is laminated so that at least a part of a periphery of the resin base having the adhesive layer lies outside a periphery of the substrate. The resin base having the adhesive layer comprises an incision or opening in at least a part of a region which lies inside the periphery of the substrate.
Abstract:
Embodiments of a deadfront article are provided. The deadfront article includes a substrate having a first surface and a second surface. The deadfront article also includes a semi-transparent layer disposed onto the second surface of the substrate. The semi-transparent layer has a region of a solid color or of a design of two or more colors, and the semi-transparent layer has a first optical density. Further, the deadfront article includes a contrast layer disposed onto the region. The contrast layer is configured to enhance visibility of the color(s) of the semi-transparent layer.
Abstract:
Described herein is coated article comprising: (a) a substrate comprising a ceramic, a glass, or a glass ceramic, wherein the substrate comprises a surface, the surface comprising a continuous upper portion and a plurality of lower portions, wherein each lower portion is connected to the upper portion by at least one sidewall; and (b) a first layer comprising a material capable of physical vapor deposition, wherein the first layer is disposed on the continuous upper portion and at least a portion of each sidewall and wherein at least a portion of each lower portion is free of the first layer. Methods of making such coated articles are described herein, wherein the substrate is coating via angular physical vapor deposition.
Abstract:
A cooking apparatus includes a main body, and a cooking plate mounted on an upper surface of the main body to cook a cooking material. The cooking plate includes a base material, a diamond-like carbon (DLC) coating layer formed on an upper surface of the base material, to contact a cooking container when the cooking container is placed on the cooking plate, and an adhesive layer interposed between the base material and the DLC coating layer, and including at least one of Si and SiOx.
Abstract:
A patterned article and a method of making the patterned article. The patterned article comprises a glass substrate and black matrix segments. The black matrix segments are in the form of a pattern and at least one of the segments has a line width of 8 μm or less. The article also comprises an adhesion agent positioned between the glass substrate and the black matrix segments. The adhesion agent provides at least one of: a total surface energy of 65 mN/m or less and at least a 30% reduction in surface polarity compared to a control untreated glass surface as determined by H2O and diiodomethane contact angle and application of the Wu model.
Abstract:
An arrangement for the CSS coating of substrates is presented, in which a perforated sheet is arranged between a heated crucible containing a sublimating substance and the substrate to be coated, whereby said perforated sheet has, on the surface facing the crucible and/or the substrate, either a surface structure and/or a coating and/or a covering which increases the thermal emissivity in the direction of the crucible and/or decreases it in the direction of the substrate.
Abstract:
A method for treating an ophthalmic lens comprising two main sides, wherein at least one side comprises an organic or mineral external layer coated with a MgF2 temporary protective layer, said method comprising the specific treating step of depositing the MgF2 temporary protective layer on the external layer through vacuum evaporation at a speed lower than or equal to 0.5 nm/s. The lens obtained from the above method is capable of being submitted to a trimming operation within 48 hours after the ophthalmic lens has been treated, i.e. after the various layers have been deposited.
Abstract:
A luminescent element comprises: a luminescent substrate; and a metal layer with a metal microstructure formed on a surface of the luminescent substrate; the luminescent substrate comprises luminescent materials with a chemical composition of Y3AlxGa5-xO12:Tb, and 0≦x≦5. A preparation method of a luminescent element and a luminescence method are also provided. The luminescent element has good luminescence homogeneity, high luminescence efficiency, good luminescence stability and simple structure, and can be used in luminescent device with ultrahigh brightness.
Abstract translation:发光元件包括:发光基板; 以及在所述发光基板的表面上形成有金属微观结构的金属层; 发光基板包括化学组成为Y 3 Al x Ga 5-x O 12:Tb,0≦̸ x≦̸ 5的发光材料。 还提供了发光元件的制备方法和发光方法。 发光元件具有良好的发光均匀性,发光效率高,发光稳定性好,结构简单,可用于超高亮度发光装置。
Abstract:
A glassware structure with metal cladding for decorative effect having a main body and a metal cladding incorporated onto the surface of the main body by means of vacuum vapor deposition. The main body has an assembly portion and an acting portion. The metal cladding is distributed at least within the range of the acting portion. The tensile strength of the main body ranges between 120 and 200 MPa (N/mm2), the thickness of the metal cladding between 0.1 and 1.0 μm, and the coverage ratio between 95% and 100%. The metal cladding material is selected from zirconium nitride, nickel nitride, molybdenum nitride, titanium nitride, chromium nitride and silicon nitride. As the metal cladding and the main body can be securely fixed, the present invention can be used instead of metal castings and tubes. The glassware produces light transmittance effect, improving shape design flexibility, novelty and value of the glassware.