摘要:
Die Erfindung betrifft ein Verfahren zur Erzeugung lichtbeugender Strukturen (1, 2, 3) auf einem Laminierwerkzeug (10) mit einer Oberseite (11), deren Oberfläche (12) als Referenzebene (R) definiert wird, das sich dadurch auszeichnet, dass die Strukturen (1, 2, 3) ausschließlich durch galvanisches Aufbringen mindestens einer ersten Metallschicht auf die Oberseite (11) erzeugt werden.
摘要:
An electrically conductive protective coating or film is provided over the surface of a reflective coating of a solar mirror by flowing or directing a cation containing liquid and an anion containing liquid onto the conductive surface. The cation and the anion containing liquids are spaced from, and preferably out of contact with one another on the surface of the reflective coating as an electric current is moved through the anion containing liquid, the conductive surface between the liquids and the cation containing liquid to coat the conductive surface with the electrically conductive coating.
摘要:
The invention relates to the production of a photovoltaic structure that includes a thin coating film, generally made of a transparent conductive oxide, deposited on top of a sublayer having photovoltaic properties. According to the invention, the coating film is deposited electrochemically in an electrolysis bath (1) and at least partly assisted by illumination coming from a light source (2).
摘要:
Disclosed is a method for producing an optical element or part of an optical element having a base. Said method comprises the following steps: - a mold (21, 1000, 2000) is provided that has a surface corresponding to the geometry of the optical element; - a layer system (7) encompassing at least one separation layer system (15, 1010, 2010) is deposited on the surface of the mold (21, 1000, 2000); - a base (4, 1030, 2030) is electroformed on the layer system (7); - at least the base on the separation layer system (15, 1010, 2010) is detached from the mold (21, 1000, 2000).
摘要:
The invention provides a method of producing a mirror under a layer of hydrophilic colloid (8) onto a transparent conducting layer (4) by coating the layer of hydrophilic colloid (8) onto the conductive substrate (4), placing the coated substrate in a plating solution (100), and passing current through the solution (100).