Abstract:
A ceramic glass for cooktop includes a glass material having an uneven layer formed on an upper surface of the glass material. A color difference meter value L of the ceramic glass ranges from 90 to 100. The glass material includes Li2O, Al2O3, and SiO2. A heat shock temperature of the ceramic glass ranges from 525 °C to 575 °C. The ceramic glass implements a surface roughness Ra of 0.1 µm or less and surface roughness Rz of 0.8 µm or less through a polishing operation.
Abstract:
A vehicle glazing is disclosed comprising a pane of tinted glass, tinted by at least 1.0 to 1.8 % wt. of total iron, having a low emissivity coating on its interior surface. The coating has an emissivity from 0.05 to 0.4 and may include a transparent conductive oxide (and optionally a dopant), or a metal layer and at least one dielectric layer. The glass is preferably toughened glass. Also disclosed is a laminated glazing comprising two plies of glass, laminated by a sheet of interlayer material therebetween, wherein at least one ply of glass or the sheet of interlayer material is body tinted, said glazing having a low emissivity coating on its interior surface. The inner ply may be clear glass or tinted glass. The interlayer material may be clear PVB or tinted PVB, and it may further be infra-red reflecting. Either of the glazings may be used as a roof or other vehicle glazing.
Abstract:
Apparatus is described for coating deposition, particularly by chemical vapour deposition, on three dimensional glass articles such as bottles. The apparatus lends itself to incorporation in plant for a continuous production process for glass containers.
Abstract:
A method is provided for making a coated article including an anti-bacterial and/or anti-fungal coating. In certain example embodiments, the method includes providing a first sputtering target including Zr; providing a second sputtering target including Zn; and co-sputtering from at least the first and second sputtering targets to form a layer comprising ZnxZryOz on a glass substrate. A coated article having an anti-bacterial and/or anti-fungal coating made using this method may also be provided.
Abstract:
Surface having properties for reducing diffuse light due to water condensation, wherein the antifog means consist in atomic aggregates adhered to and dispersed over the surface, wherein the aggregates are selected among the transition metals and the silicon. It is also related to a method for obtaining a surface having properties for reducing diffuse light due to water condensation a wavelength selected in the range from 100 nm to 50 micrometers, comprising the steps of selecting the wavelength, obtaining a glass or polymer surface that has been subjected to optical polishing and adhering to the surface atomic aggregates which are selected among the transition metals and the silicon with a separation between them being lower than or having an order of the selected wavelength selected. Thus a durable antifogging surface is obtained.
Abstract:
The invention relates to a fire protection panel (10), comprising: at least one float glass panel (1.1) having a tin bath side (II), at least one protective layer (3.1) that is arranged on the tine bath side (II) in a planar manner and at least one fire protection layer (2.1) that is arranged on the protective layer (3.1) in a planar manner, wherein the protective layer (3.1) comprises metal oxide, metal nitrite, metal silicide and/or mixtures or layered compounds thereof.
Abstract:
A method of producing a glass substrate having a first layer formed on a surface of the substrate by low-temperature CVD includes (1) a step of preparing the glass substrate and (2) a step of forming the first layer on the glass substrate by the low-temperature CVD, wherein, in the glass substrate after the step (2), an integrated value after a baseline correction in a wavenumber range of 2600 cm -1 to 3800 cm -1 in a peak due to OH groups obtained by an FTIR measurement on the first layer is 9.0 or less, and the C content of the first layer is 1.64 at% or less.