Abstract:
Detailed embodiments of the present invention provide a composite coating, a preparation method, and a device. The composite coating comprises a coating formed by plasma containing an unsaturated ester monomer having an aromatic ring, an ester coupling agent monomer, and an organosilane monomer having an aromatic ring or an epoxy group as an inner layer; and a coating formed by plasma containing a fluoroacrylate monomer and an organosilane monomer having an aromatic ring or an epoxy group as the outer layer. The composite coating has both an excellent anti-corrosion performance and excellent wear resistance.
Abstract:
Coating material (237) for generating a coating layer, in particular by non-impact printing, the coating material comprising a curable resin; wherein the coating material (237) exhibits a minimum viscosity when being heated from room temperature with a heating rate of 5 Kelvin per minute up to a temperature where curing of the coating material occurs, wherein the minimum viscosity is in a range between 3 Pascal seconds to 20000 Pascal seconds, in particular in a range between 50 Pascal seconds and 10000 Pascal seconds and further in particular in a range between 250 Pascal seconds and 7000 Pascal seconds; and/or wherein a pill flow length is below 350 mm at a potential curing temperature which may be used to cure the coating material.
Abstract:
A coating material (237), in particular for non-impact printing, the coating material comprising: a resin comprising at least one resin component, in particular at least one type of resin, the resin comprising in particular an amorphous resin portion; a curing agent comprising at least one crosslinking agent and/or at least one thermal initiator and/or at least one catalyst; and wherein the coating material comprises the curing agent in an amount such that the cured coating material is able to reach a rating of at least 2-3 in the Methylethylketone- test after 10 s according to the DIN EN 12720; and/or the cured coating material resists at least 50 IPA (Isopropyl alcohol) double rubs.
Abstract:
A coating material (237) in particular configured for generating a coating layer by non-impact printing, the coating material being provided in the form of a plurality of particles and comprising: a resin, the resin comprising a curable resin component, the resin further comprising an amorphous resin portion, in particular wherein the resin component is at least partially thermally curable, in particular curable by a crosslinking agent able to react with functional groups of the resin component; and the coating material comprising in particular a charge control agent.
Abstract:
An exterior panel (14) for a kitchen appliance (16) includes a metallic substrate panel (12) having a predetermined surface pattern (18) on at least one side of the metallic substrate panel (12), wherein the metallic substrate panel (12) is formed to include a predetermined contour (22). A coating layer is an organic paint coating composition (132) on the at least one side of the metallic substrate panel (12), the coating layer including a predetermined color and a fingerprint resistive surface, wherein the coating layer is at least partially translucent such that the predetermined surface pattern (18) is visible with the naked eye through the coating layer, and wherein the predetermined surface pattern (18) is modified by the coating layer to reflect the combination of the predetermined surface pattern (18) and the predetermined color of the coating layer.
Abstract:
A method for depositing a film is provided, which enables to deposit an oil repellent film having an enhanced abrasion resistance properties not to mention being good enough for practical use. A film deposition system 1, wherein a substrate holder 12 having a substrate holding surface for holding a plurality of substrates 14 is provided rotatably to inside a vacuum container 10, is configured to comprise an ion source 38 provided to inside the vacuum container 10 to have a configuration and in an arrangement and/or a direction, by which an ion beam can be irradiated only to a partial region of the substrate holding surface, and a deposition source 34 provided to inside the vacuum container 10 in an arrangement and a direction, so that a film deposition material of an oil repellent film can be supplied to the whole region of the substrate holding surface; wherein an operation of the ion source 38 is stopped before starting an operation of the deposition source 34.
Abstract:
A stereoscopic LED display with dual barrier, comprising: A LED display panel (110); A heat shield (120), placed in front of the LED light-emitting surface; A dual barrier (130), comprising the first barrier (102, 202, 302) and the second barrier (105, 205, 305), the first barrier (102, 202, 302) placed in front of the heat shield, making the centers of the LED sub-pixels on the same levels laterally and longitudinally, the second barrier (105, 205, 305) placed ahead of the first barrier (102, 202, 302) for the stereoscopic light splitting; A protection layer (140) placed ahead of the second barrier (105, 205, 305).