Title translation:VERFAHREN ZUR HERSTELLUNG VON METALLISIERTEM TEXTILEMFLÄCHENGEBILDE,METALLISIERTES TEXTILESFLÄCHENGEBILDEUND VERWENDUNG DES SO HERGESTELLTEN METALLISIERTEN TEXTILENFLÄCHENGEBILDES
Abstract:
The invention relates to a method for producing a planer metallised textile structure which is characterised in that a planar textile structure (A) is printed with a printing formula which contains at least one metal powder (a) as components, selected from a powder of Zn, Ni, Cu, Sn, Co, Mn, Fe, Mg, Pb, Cr and Bi, or mixtures and alloys of the above-mentioned metals, (B) is thermally treated in one or several steps, and (C) an additional metal is deposited on the planar textile structure.
Abstract:
The invention relates to a method for producing electrically conductive surfaces on an electrically non-conductive substrate, comprising the following steps: a) transferring a dispersion containing particles suitable for electroless coating and/or electrocoating from a carrier to the substrate by irradiating the carrier with a laser, b) at least partially drying and/or curing the dispersion transferred to the substrate to form a base layer, c) electroless coating and/or electrocoating of the base layer.
Abstract:
The invention relates to a device for the electroplating of a surface of a substrate (7) with a structured or fully flat base layer (9), which device comprises at least one electrolytic bath (3) with at least one rotatably mounted roller (2) which can be connected as a cathode and, during the electroplating, contacts the base layer (9), wherein the base layer (9) is covered by an electrolyte solution (5) contained in the electrolytic bath (3) and is moved in relation to the at least one roller (2) during the coating. The at least one roller (2) which can be connected as a cathode is cathodically connected during the contact with the base layer (9) and becomes currentless or anodically connected as soon as there is no contact with the base layer (9). The invention also relates to a method for the electroplating of a surface of a substrate (7) with a structured or fully flat base layer (9), wherein the base layer (9) is surrounded by an electrolyte solution (5) and is contacted by at least one roller (2) which can be connected as a cathode. The roller (2) which can be connected as a cathode is cathodically connected when it contacts the base layer (9) and becomes currentless or is anodically connected as soon as there is no contact with the base layer (9).
Abstract:
The invention relates to a method for applying a metal layer to a substrate by chemical and/or galvanic deposition of a metal from a metal salt solution, an essential feature being that the substrate surface comprises carbon nanotubes. The invention further relates to the use of carbon nanotubes for applying a metal layer to a substrate.
Abstract:
Method for producing electrically conductive, structured or whole-area surfaces on a carrier, in which a first step involves applying a structured or whole-area base layer to the carrier with a dispersion containing electrically conductive particles in a matrix material, a second step involves at least partly curing or drying the matrix material, a third step involves uncovering the electrically conductive particles by at least partly breaking up the matrix, and a fourth step involves forming a metal layer on the structured or whole-area base layer by means of electroless or electrolytic coating.
Abstract:
The invention relates to a mixture, comprising a detergent and a co-detergent, whereby the co-detergent is an ampiphilic polymer, comprising one or more hydrophobic sub-groups (A) and one or more hydrophilic sub-groups (B), characterised in that one or more hydrophobic sub-groups (A) are formed from a polyisobutene block, the polyisobutene macromolecules of which comprise at least 50 mol % terminally-arranged double bonds.
Abstract:
The invention relates to a dispersion for applying a metal layer to an electrically non-conductive substrate containing an organic binder component, a metal component with different metals and/or metal particle shapes, and a solvent component. The invention further relates to methods for producing said dispersion, methods for creating an optionally structured metal layer with the aid of the dispersion, the obtained substrate surfaces, and the use thereof.
Abstract:
The invention relates to a method for producing electrodes for solar cells, the electrode being designed as an electrically conducting layer on a substrate (1) for solar cells. In a first step, a dispersion containing electrically conducting particles is transferred from a support (7) onto the substrate (1) by irradiation of the dispersion with a laser (9), and in a second step, the dispersion transferred onto the substrate (1) is dried and/or cured to form the electrically conducting layer.