B05D2401/21

Polycarboxylic acid-containing aqueous coating agent having an improved effect pigment alignment

Described herein are an aqueous coating composition including at least one anionically stabilized binder, effect pigment, polycarboxylic acid, and solvent, and a method for producing a multicoat paint system by producing a basecoat directly on a substrate, producing a clearcoat directly on the basecoat, and then jointly curing the basecoat and the clearcoat. At least one of the basecoat materials includes the aqueous coating. Also described herein are multicoat paint system obtainable by this method, and the use of at least one polycarboxylic acid in an aqueous coating composition for improving the effect pigment orientation, or for color matching.

Top coat composition

Waterborne top coat compositions, processes for preparing such compositions, and methods for forming top coats on substrates are provided. In an embodiment, a waterborne top coat composition includes water, pigment(s) and resin solids. The resin solids comprise about 60 to 100 wt. % of binder solids and 0 to about 40 wt. % of crosslinker solids, the binder solids comprising about 1 to about 40 wt. % of an acrylic/(meth)acryl copolymer hybrid binder, and about 60 to about 99 wt. % of one or more additional binders, the sum of the respective wt. % in each case equaling 100 wt. %.

NOVEL METHOD FOR PRODUCING COATING COMPOSITIONS WITH IMPROVED COATING PROPERTIES AND CONSISTENCY THEREOF
20170108296 · 2017-04-20 ·

A method for creating a coating onto a conduit is provided. The method includes rotating the conduit while injecting a controlled amount of slurry onto the surface of an inner diameter of the conduit through a nozzle that is retracted from out of the conduit at a controlled speed. The method offers improved reproducibility and repeatability of coating properties in comparison to conventional coating methods.

POLYESTER FILM AND MANUFACTURING METHOD THEREOF

The present invention relates to a transfer polyester film. More particularly, the present invention relates to a transfer polyester film and a method for manufacturing the same, wherein the transfer polyester film has a coating layer with an excellent releasing property so that at the time of forming a hard coating layer in order to impart a surface gloss to an interior product, the transfer polyester film may be attached to a surface of the hard coating layer so as to allow the surface of the hard coating layer to be smoothly formed in a step of coating and curing a hard coating solution and may be removed after completely curing the hard coating layer.

Coating Compositions for Aluminum Beverage Cans and Methods of Coating Same

A coating composition for a food or beverage can that includes an emulsion polymerized latex polymer formed by combining an ethylenically unsaturated monomer component with an aqueous dispersion of a water-dispersible polymer.

Aqueous soft touch coating composition and wear-resisting coating formed by same

The present invention provides a multi-layer coating system comprising: (a) a first coating layer formed from a first coating composition; and (b) a second coating layer applied directly over at least a portion of the first coating layer and formed from a second coating composition. The present invention further provides a substrate coated with the multi-layer coating system.

Aqueous Soft Touch Coating Composition and Wear-Resisting Coating Formed by Same

The present invention provides a multi-layer coating system comprising: (a) a first coating layer formed from a first coating composition; and (b) a second coating layer applied directly over at least a portion of the first coating layer and formed from a second coating composition. The present invention further provides a substrate coated with the multi-layer coating system.

METHOD FOR FORMING ASSEMBLED NANOMATERIAL COATING BY SOLUTE-ASSISTED ASSEMBLY, AND RESULTING PRODUCTS
20250353036 · 2025-11-20 · ·

A method for forming a nanomaterial coating through solute-assisted assembly includes steps of: providing a mixture comprising a solvent, a solute, and a nanomaterial or particle; applying sonication to the mixture; and contacting a substrate with the mixture so as to form a coating of the nanomaterial or the particle onto the substrate. The solute is selected from a salt, a sugar, an acid, a base, or a combination thereof. The resulting products comprising the nanomaterial coating include articles for flexible electronics and functional textiles.

Nanocellulose-containing aqueous coating composition for automotive exterior

An aqueous coating composition for an automotive exterior, containing resin particles (A), a crosslinking agent (B), a pigment (C), and a nanocellulose (D), wherein a content of the nanocellulose (D) is 0.5 to 2.0 parts by mass in terms of solid content with respect to 100 parts by mass of a resin solid content in the coating, a solid content concentration of the coating composition is in a range from 45 to 65 mass %, and a viscosity is in a range from 350 to 1200 mPa.Math.s. Also, an automobile coated with the aqueous coating composition, a method of forming a coating film using the aqueous coating composition, and a method of forming a multilayer coating film comprising applying the aqueous coating composition on an object, applying an aqueous second colored coating composition thereon, then applying a clearcoat coating composition thereon, and simultaneously heat-curing the compositions.

ANTI-FOG AND SUBSTRATE CLEANING COMPOSITION AND PROCESS FOR THE USE THEREOF

An anti-fog composition is provided that includes a water-soluble polymer and a colloidal dispersion. The hydrophilic solvent system includes water and a miscible organic solvent, with water being the majority by weight of the composition. A process for applying the composition to a substrate is also provided. The substrates include not only glass, but also polycarbonate. The composition is well suited for formation of an end user kit for applying such a film to a substrate. Such a kit includes a container for the composition, or a wipe wet with the composition. The container being a bottle, or a propellant filled aerosol canister. Upon the composition drying on the substrate, the anti-fog film is produced without resort to additional application processes.