Abstract:
PROBLEM TO BE SOLVED: To obtain a mixture having a good ability to wet pigments, exhibiting a low yield point even at high viscosity, and being useful as a binder by constructing the mixture from a condensation resin constructed from a urea (derivative) and an acidic-CH aldehyde or ketone and a radiation-curable compound having a plurality of (meth)acryloyl groups. SOLUTION: This mixture is constructed from 10-90 wt. % condensation resin constructed from a urea (derivative) and an acidic-CH aldehyde or ketone and, optionally, HCHO, desirably comprising 50-100 wt.% acidic-CH aldehyde or ketone and 0-50 wt.% HCHO, constructed from an aldehyde or ketone (e.g. i-butylaldehyde) and desirably having a molar ratio of the urea (derivative) to the aldehyde or ketone of 1:4 to 1:10 and 90-10 wt. % radiation-curable compound desirably containing a polyester acrylate or a polyether acrylate having two or more, desirably, 2-20 (meth)acryloyl groups.
Abstract:
The invention relates to a method for producing molding materials and coatings on substrates by curing radiation curable materials under a protective gas, by irradiation with light. The method is characterized in that said protective gas is a gas that is heavier than air and in that the protective gas is prevented from escaping sideways during the radiation curing by a suitable device or measures.
Abstract:
The process for coating or printing substrates with a coating or printing agent is characterized by the application to the substrate of a polymerizable substance containing liquid crystal, polymerizable monomers which for coating carry at least two polymerizable groups and for printing carry at least one polymerizable group, followed by polymerization, wherein the coating or printing agent contains a1) a chiral liquid crystal monomer and b) a polymer binder and/or monomer compounds that can be converted into the polymer binder by polymerization or, in the case of dispersion coatings and printing inks, a dispersing aid d), or the coating or printing agent contains a2) an achiral liquid crystal monomer, b) a polymer binder and/or monomer compounds that can be converted into the polymer binder by polymerization or, in the case of dispersion coatings and printing inks, a dispersing aid d), and c) a chiral compound that is not a liquid crystal.
Abstract:
The invention relates to a method for producing a coated substrate by applying at least one coating agent to the substrate and then hardening said coating agent in order to obtain a coat of lacquer on the substrate. The invention also relates to the coated substrates obtained by said method, and a coating agent.
Abstract:
The invention relates to a device and process for producing moulding compounds and coatings on substrates by curing radiation-curable compounds in an inert gas atmosphere by irradiating them with energy-rich radiation.
Abstract:
Coating materials containing at least one cerium (IV) compound, at least one non-aqueous solvent, at least one radically polymerizable monomer, optionally at least one multifunctional, polymerizable compound and optionally other additives which are typical for paints.
Abstract:
The present invention relates to films which are coated with at least two paint coats (2) (3), whereby the backing film (1) is coated with at least one radiation-hardenable paint coat (2) and at least one second paint coat (3), which can harden at least partially without radiation. The invention also relates to a method for producing said films and to their use for coating steel, aluminium and plastic substrates.
Abstract:
The invention relates to radiation-curable coating substances containing NIR photoinitiators, to novel formulations of NIR photoinitiators and to the use of said substances.
Abstract:
UV- and heat-curable aqueous polyurethane dispersions comprise compounds attached via polyisocyanates and containing UV-polymerizable C=C double bonds, aliphatic diols incorporated by way of isocyanates and having a molecular weight of less than 500 g/mol, compounds attached via isocyanates and containing carboxylic acid or sulfonic acid groups and/or salts thereof, free hydroxyl groups, and compounds containing blocked isocyanate groups. They are suitable for coating heat-stable substrates such as metal substrates and may be used with advantage for automotive clearcoats.