Patent classifications
C09D11/101
DEVICE FOR PRODUCING 3D-PRINTED ACTIVE SUBSTANCE-RELEASING SYSTEMS WITH ACTIVE SUBSTANCE DEPOTS, AND METHOD FOR PRODUCING 3D-PRINTED ACTIVE SUBSTANCE-RELEASING SYSTEMS
A device for producing a 3D-printed active substance-releasing system with active substance depots, such that a radiation source in operation causes a polymerisation of a layer of the base material on the construction platform and that an inkjet printhead incorporates an active substance mixture, which has at least one active substance, into the base material in a locationally selective manner. A trough is provided, in which a base material and a construction platform are arranged, and polymerising selected regions of a layer of the base material on the construction platform and introducing, by means of an inkjet printing method, an active substance mixture, which has at least one active substance, into the base material and/or polymerised base material in a locationally selective manner in order to thereby create active ingredient depots in the active ingredient-releasing system.
Solvent-UV hybrid inkjet ink for aluminum beverage can decoration
A hybrid inkjet ink comprising a water miscible organic solvent, a UV radiation-curable material and appropriate photoinitiator, and an epoxide-containing material and printed decorations produced by applying the inkjet ink images to an aluminum substrate.
Solvent-UV hybrid inkjet ink for aluminum beverage can decoration
A hybrid inkjet ink comprising a water miscible organic solvent, a UV radiation-curable material and appropriate photoinitiator, and an epoxide-containing material and printed decorations produced by applying the inkjet ink images to an aluminum substrate.
PHOTOCURABLE COMPOSITION FOR SUPPORT MATERIALS FOR INKJET 3D PRINTERS, INK, CARTRIDGE, METHOD FOR PRODUCING SUPPORT MATERIAL, AND METHOD FOR PRODUCING OPTICALLY SHAPED ARTICLE
In the present invention, a photocurable composition for a support material for an inkjet 3D printer comprises a water-soluble ethylenically unsaturated monomer containing an ionic group and a counter ion, and a water content is not more than 10 mass % in 100 mass % of the photocurable composition for a support material. It is preferably that the photocurable composition for a support material for an inkjet 3D printer further comprises a photopolymerization initiator.
PHOTOCURABLE COMPOSITION FOR SUPPORT MATERIALS FOR INKJET 3D PRINTERS, INK, CARTRIDGE, METHOD FOR PRODUCING SUPPORT MATERIAL, AND METHOD FOR PRODUCING OPTICALLY SHAPED ARTICLE
In the present invention, a photocurable composition for a support material for an inkjet 3D printer comprises a water-soluble ethylenically unsaturated monomer containing an ionic group and a counter ion, and a water content is not more than 10 mass % in 100 mass % of the photocurable composition for a support material. It is preferably that the photocurable composition for a support material for an inkjet 3D printer further comprises a photopolymerization initiator.
Encapsulating composition
The present application relates to an encapsulating composition, an organic electronic device, a method for evaluating reliability of the organic electronic device and a method for preparing the organic electronic device, and provides an encapsulating composition which can improve flatness and adhesion of an organic layer sealing an organic electronic element to effectively block moisture or oxygen introduced into an organic electronic device from the outside, thereby securing the lifetime of the organic electronic device.
Encapsulating composition
The present application relates to an encapsulating composition, an organic electronic device, a method for evaluating reliability of the organic electronic device and a method for preparing the organic electronic device, and provides an encapsulating composition which can improve flatness and adhesion of an organic layer sealing an organic electronic element to effectively block moisture or oxygen introduced into an organic electronic device from the outside, thereby securing the lifetime of the organic electronic device.
PLASMA-CURABLE OFFSET PRINTING INK COMPOSITION, METHOD FOR PRODUCING PRINTED MATTER USING SAME, AND PRINTING METHOD
A plasma-curable ink composition for offset printing having high reactivity with plasma and capable of being hardened into a sufficiently dried state even in the use of plasma generated by a remote-type plasma generator, and a method for producing printed matter and a method for printing information using the same. The plasma-curable ink composition for offset printing comprises a pigment, a binder resin, and at least one specific ingredient selected from the group consisting of castor oil, polymerized oil, and alkyd resins having an acid value of 10 mg KOH/g or more.
PLASMA-CURABLE OFFSET PRINTING INK COMPOSITION, METHOD FOR PRODUCING PRINTED MATTER USING SAME, AND PRINTING METHOD
A plasma-curable ink composition for offset printing having high reactivity with plasma and capable of being hardened into a sufficiently dried state even in the use of plasma generated by a remote-type plasma generator, and a method for producing printed matter and a method for printing information using the same. The plasma-curable ink composition for offset printing comprises a pigment, a binder resin, and at least one specific ingredient selected from the group consisting of castor oil, polymerized oil, and alkyd resins having an acid value of 10 mg KOH/g or more.
AQUEOUS ELECTRON BEAM CURABLE COMPOSITIONS COMPRISING POLY(ALKOXYLAES)
The present application is drawn to aqueous electron beam curable compositions comprising poly(alkylene oxide) containing substances, and any blend of water-soluble or water-dispersible ethylenically unsaturated monomers, oligomers and polymers.