Abstract:
The invention relates to a method for coating a float glass strip (2) following the production process of the float glass strip, wherein the float glass strip (2) is transported from a float glass bath by a conveying device (3), in which the float glass strip (2) cools and/or is cooled, wherein coating is performed in at least two coating devices (4.1 to 4.n) arranged one after the other along the conveying device (3), wherein coating is performed by each of the coating devices (4.1 to 4.n) at a location at which the temperature of the float glass strip (2) lies within a temperature range that is different from the temperature ranges of the float glass strip (2) in the region of the other coating devices (4.1 to 4.n). The coating is performed preferably by means of flame pyrolysis (combustion CVD) at normal atmospheric pressure.
Abstract:
The invention relates to a method for producing nanoscalar electrically conductive multilayer systems on surfaces, wherein the coated surfaces are used in particular for thermal or solar protection or in heating elements. The invention is based on the object of providing a possible way of overcoming the cited disadvantages of the established methods for depositing electrically conductive layers. According to the invention, this object is achieved in the case of a method for coating substrates with an electrically conductive layer system by applying at least one electrically conductive layer by means of a flame pyrolysis process.