Abstract:
A waterborne base coat having a special-effect color and which contains aqueous microgel as binder, 0.5 to 2 wt.-% of poly(meth)acrylic acid thickener and 2 to 7 wt.-% of non-ionically emulsified EVA copolymer wax with a drop point of the wax portion of 80 to 110° C., the wt.-% in each case calculated as solids and relative to the solids content of the waterborne base coat.
Abstract:
Embodiments of the present invention provide a thermosetting resin molded article having a surface on which a plated membrane or a painted membrane may be formed without application of a mold release agent, defatting, sanding and primer processing. The thermosetting resin molded article is produced by a method of applying a thermoplastic resin solution obtained by dissolving at least a styrene resin in a solvent to at least a design forming area in a surface of a shaping mold; drying the shaping mold to form a thermoplastic resin membrane; and injecting a thermosetting resin composition into a cavity of the shaping mold and thermally curing the thermosetting resin composition, to obtain a thermosetting resin molded article having a surface on which the thermoplastic resin membrane. The thermoplastic resin solution may be obtained by dissolving the styrene resin and a carbon material in the solvent.
Abstract:
The invention refers to a method for forming particles or droplets of at least one substance comprising the steps of providing a foamed medium, which foamed medium comprises said substance, and forming particles or droplets of said substance at least partly by electrostatic processing. The use of foamed medium in electrostatic processing enables higher production speeds and increases the evenness of a coating layer formed by electrospinning or electrospraying the particles or droplets on a substrate.
Abstract:
A method and system for powder coating non electrically conductive elements, preferably brake pads. A pre-treatment station is upstream of an electrostatic powder coating deposition station and a baking station for melting and polymerizing the powder coating in order to form a coating layer on a surface to be coated. The pre-treatment station causes the elements to be coated to conduct electrically by uniformly wetting said elements by means of creating poorly mineralized water covalent bonds on at least one surface to be coated, in an amount aimed at producing a measurable weight increase in the non electrically conductive elements, which then causes them to conduct electrically. The water adsorbed and/or deposited is subsequently eliminated within the baking station.
Abstract:
A coating method wherein in order to simplify the coating method and increase the flexibility thereof with respect to respective desired coatings, provision is made that a powder lacquer layer (3) is applied to a surface (2) of the component (1), and an imprint (4) is applied to the powder lacquer layer (3), preferably by an inkjet method.
Abstract:
Methods include applying an electric charge to a coating material that includes carbon nanotubes and a carrier, such as paint, and depositing the electrically charged coating material to a substrate. In some methods, the applying includes utilizing an electrostatic sprayer. In some methods, the substrate is isolated from ground during the depositing. In some methods, the substrate is an insulator. Some methods result in regions of carbon nanotubes that are substantially longitudinally aligned after the depositing. Coated substrates may include a coating with carbon nanotubes that are substantially longitudinally aligned. Aircraft, spacecraft, land vehicles, marine vehicles, wind turbines, and apparatuses that may be susceptible to lightning strikes or other types of electromagnetic effects and that include a coated substrate also are disclosed.
Abstract:
A method for painting a plastic powder product includes the steps of: adding a conductive material into engineering plastics; high pressure injection molding the engineering plastics with the conductive material in a module to manufacture a plastic powder product; surface treating the plastic powder product for removing oil stains and inks from the plastic powder product, an electrostatic gun spraying paint on the plastic powder product; baking the plastic powder product in an ultraviolet oven for hardening the plastic powder product at a temperature between 90. degree. C. and 120. degree. C. for about 3 to 15 minutes.
Abstract:
The invention refers to a method for forming particles or droplets of at least one substance comprising the steps of providing a foamed medium, which foamed medium comprises said substance, and forming particles or droplets of said substance at least partly by electrostatic processing. The use of foamed medium in electrostatic processing enables higher production speeds and increases the evenness of a coating layer formed by electrospinning or electrospraying the particles or droplets on a substrate.
Abstract:
A film is formed on a planar surface by applying a granular layer on the planar surface by using electrostatic forces, and then finishing the granular layer to form the film. A converting line may be rebuilt to have devices employing this method. A multilayer sheet-like product comprising a film layer may be produced.
Abstract:
Synthetic resins, such as thermoplastics and thermosetting resins, which have certain specified surface resistivities and static dissipation voltage values, are advantageously used as substrates to be coated in electrostatically assisted coating processes. Thus less of an electrically conducting additive, which is often deleterious to the substrate physical properties, may be used and/or additives which do not increase the electrical conductivity of the substrate to much may be used.