Abstract:
The invention relates to a composite material (1), to containers made therefrom and to a method for producing the composite material (1), which comprises a substrate (2) and a coating (3) on the substrate (2), wherein the coating (3) provides at least a first region (31) facing the substrate (2) and at least a second region (32) facing away the substrate (2), and wherein the first region (31) comprises a barrier layer (4) and the second region (32) a passivation layer (5).
Abstract:
Disclosed are a method and a device for plasma treating workpieces (5). Said workpiece is inserted into a chamber (4) of a treatment station (17), which can be at least partly evacuated, and at least one part (18) of the treatment station is moved relative to another part (27, 35) thereof in order to help manipulate the workpieces. The movement is carried out in such a way that a shell-shaped chamber wall (18) is positioned relative to a floor (35) of the chamber and relative to a chamber lid (27).
Abstract:
The invention provides a process for coating workpieces by plasma-induced chemical vapor deposition, in which a process gas is introduced into a coating chamber and a plasma is ignited by electromagnetic energy in at least one region of the coating chamber which adjoins the workpiece and in which the process gas is present, wherein the coating operation is monitored on the basis of at least one measured spectral parameter of the plasma, and the workpiece is removed in the event of a deviation from a desired range for the parameter.
Abstract:
An apparatus for producing holes in dielectric workpieces in the form of thin sheets and substrates, in particular of glass or glass-like materials and semiconductors is provided. The apparatus includes individual high-voltage electrodes that are symmetrically arranged on an electrode holder around the hole to be produced in the workpiece. The apparatus also includes individual counter electrodes that are arranged on a counter electrode holder. The electrodes and counter electrodes can be connected in a permutating manner to a high-voltage source for the discharge of high-voltage flashovers.
Abstract:
The invention relates to a method and an apparatus for the treatment of substrates, in particular for the coating of plastic containers on a rotary installation. A plurality of treatment devices are arranged on the rotor and pass through a plurality of process phases as a function of their angle position on the rotor. For at least one process phase, the angle position can be set variably as a function of the current rotational speed of the rotor.
Abstract:
The invention relates to a fluid rotary leadthrough having a journal and a sleeve. The sleeve and the journal are sealed off with respect to one another. The journal and the sleeve each have a line connection. The line connections, at least from time to time, are connected to one another via a fluid passage so that a flow of fluid through the fluid rotary leadthrough is made possible. The journal is arranged rotatably in the sleeve.
Abstract:
To improve a biodegradable plastic substrate by applying a coating, the invention provides a process for producing a composite material in which a biodegradable plastic substrate is provided, which is coated on at least one surface with at least one barrier layer, the barrier layer being deposited by chemical vapor deposition.
Abstract:
A coating apparatus is provided for simplifying the introduction and removal of workpieces into and from a reactor for plasma coating and to increase the throughput. The coating apparatus has a reactor with a moveable sleeve part and a base element, at least one sealed coating chamber being defined between sleeve part and base element when the latter two parts are fitted onto one another. The coating apparatus also has a device for introducing electromagnetic energy into the at least one coating chamber. The reactor has at least two coating places.
Abstract:
Disclosed are a method and a device for plasma treating workpieces (5). Said workpiece is inserted into a chamber (7) of a treatment station (3), which can be at least partly evacuated, and is positioned within the treatment station by means of a holding element. In order to simultaneously supply at least two chambers with at least one operating means, a flow of the operating means is branched at least once so as to form at least two partial flows (55).
Abstract:
A composite material having a substrate material and at least one barrier coating on one side of the substrate material. The barrier coating is plasma impulse chemical vapor deposited (PICVD) to the substrate material. The barrier coating includes at least one of material selected from the group consisting of SiOx, TiOx, SnOx, Si3Ny, Nb2Oy, and Al2Oy.
Abstract translation:一种复合材料,其具有衬底材料和在衬底材料的一侧上的至少一个阻挡涂层。 阻挡涂层是等离子体脉冲化学气相沉积(PICVD)到基底材料。 阻挡涂层包括选自SiO x,TiO x,SnO x,Si 3 N y,Nb 2 O y和Al 2 O y的材料中的至少一种。