The present invention relates to a refined product comprising a substrate having a pattern of a lacquer layer, and a hot stamping foil layer located on the lacquer layer, the lacquer layer having been obtained by inkjet printing from an aqueous lacquer composition comprising a binder composition comprising a polyacrylate and a polyurethane, at least one humectant, and water, the lacquer composition having a binder solids content of at least 20% by weight, preferably at least 30% by weight, based on the total weight of the lacquer composition. The present invention further relates to a process for producing said refined product.
The present invention relates to a refined product comprising a substrate with a pattern made up of a coating, and a hot stamping foil layer located on the coating, wherein the coating was obtained by inkjet printing from an aqueous coating composition which comprises a binder composition, comprising a polyacrylate and a polyurethane, at least one humectant, and water, wherein the coating composition has a binder-solids content of at least 20% by weight, preferably at least 30% by weight, with respect to the total weight of the coating composition. The present invention also relates to a method for producing this refined product.
C09D 11/102 - Encres d’imprimerie à base de résines artificielles contenant des composés macromoléculaires obtenus par des réactions autres que celles faisant intervenir uniquement des liaisons non saturées carbone-carbone
C09D 11/107 - Encres d’imprimerie à base de résines artificielles contenant des composés macromoléculaires obtenus par des réactions faisant intervenir uniquement des liaisons non saturées carbone-carbone à partir d'acides non saturés ou de leurs dérivés
C09D 11/38 - Encres pour l'impression à jet d'encre caractérisées par des additifs non macromoléculaires autres que les solvants, les pigments ou les colorants
In a milling method according to the invention using a milling device (10) according to the invention for comminuting particles in a liquid, a liquid together with particles is conducted through at least one milling passage (51a - 51d) between a stator housing (14) and a first rotor (13a) which is arranged therein and can be rotated about a machine axis (11). Milling beads are used in the at least one milling passage (51a - 51d) during the milling process. The liquid together with the particles is conducted through a separating device (43) downstream of the at least one milling passage (51a - 51d), said separating device separating the milling beads from the particles and the liquid. A relative rotational movement is carried out between the stator housing (14) and the first rotor (13a), and additionally a translational movement (28) or vibration is carried out along one or more movement axes. The translational movement (28) or vibration between the stator housing (14) and the first rotor (13a) achieves an optimization of the flow conditions and the milling performance.
B02C 17/16 - Appareils comportant des agitateurs placés dans une cuve fixe entraînant le contenu en mouvement
B02C 17/04 - Désagrégation au tonneau, c.-à-d. par des appareils constitués par une cuve où les produits à désagréger sont chargés, avec ou sans éléments particuliers de désagrégation tels que billes ou boulets à cuves non perforées
B02C 17/14 - Appareils dans lesquels le contenu à broyer est renversé par des mouvements de la cuve autres qu'une rotation, p. ex. par oscillation, vibration, basculement
B02C 17/18 - Désagrégation au tonneau, c.-à-d. par des appareils constitués par une cuve où les produits à désagréger sont chargés, avec ou sans éléments particuliers de désagrégation tels que billes ou boulets Parties constitutives
A method for producing dispersions with a defined particle size includes following steps: A) Preparation of a mixed dispersion in a predispersion process, B) introduction of the mixed dispersion into at least one continuously operating separating device, C) separation of the mixed dispersion in the separating device into coarse particles of a coarse-part dispersion and into fine particles of a fine-part dispersion, D) discharging the fine particle dispersion from the separating device into at least one storage tank, E) discharging the coarse particle dispersion from the separating device into at least one disperser, F) grinding the coarse particles of the coarse particle dispersion in the disperser into a dispersed particle mixture and returning the dispersed particle mixture to the mixing tank in the predispersion process, and G) mixing the dispersed particle mixture returned to the predispersion process with the mixing dispersion produced in the predispersion process in the mixing tank.
Method for producing dispersions of a defined particle size, a liquid mixture dispersion (Dm) being continuously separated into a coarse fraction dispersion (Dg) and a fine fraction dispersion (Df), comprising the following steps: A) continuously or discontinuously producing the mixed dispersion (Dm) in a pre-dispersion process, in which a particle mixture (Pm) of a disperse phase is mixed with a continuous liquid phase to form the mixed dispersion (Dm) and is intermediately stored in at least one mixing tank (Tm), B) introducing the mixed dispersion (Dm) from the pre-dispersion process into at least one continuously operating separating device (VT), C) separating the particle mixture (Pm) of the mixed dispersion (Dm) in the at least one separating device (VT) into coarse particles (Pg) of the coarse fraction dispersion (Dg) and into fine particles (Pf) of the fine fraction dispersion (Df) in accordance with a threshold value for the particle size, D) discharging the fine fraction dispersion (Df) from the at least one separating device (VT) into at least one storage tank (Tv), E) discharging the coarse fraction dispersion (Dg) from the at least one separating device (VT) into at least one disperser (DP), F) crushing the coarse particles (Pg) of the coarse fraction dispersion (Dg) in the at least one disperser (DP) into a dispersed particle mixture (PDm) and returning the dispersed particle mixture (PDm) into the at least one mixing tank (Tm), to the pre-dispersion process, and G) mixing the dispersed particle mixture (PDm) returned to the pre-dispersion process with the mixed dispersion (DM) produced in the pre-dispersion process in the at least one mixing tank (Tm).
[ Paints, ] varnishes, lacquers; [ preservatives against rust in the nature of a coating; preservatives against deterioration of wood, namely, wood preservatives; ] colorants [ ; mordant dyes; raw natural resins; metals in foil and powder form for painters, decorators, printers and artists ]
Paints, varnishes, lacquers; preservatives against rust and
against deterioration of wood; colorants; mordants; raw
natural resins; metals in foil and powder form for painters,
decorators, printers and artists.