Patent classifications
C09D11/101
DECORATED NATURAL LEATHER
A manufacturing method of decorated natural leather including the steps of: attaching a crusted leather (45) with its corium side by an adhesive (46) to a temporary carrier (47); inkjet printing the crusted leather (45) on its grain side with one or more pigmented inkjet inks; wherein the surface area of the temporary carrier (47) is larger than the surface area of the crusted leather (45).
DECORATED NATURAL LEATHER
A manufacturing method of decorated natural leather including the steps of: attaching a crusted leather (45) with its corium side by an adhesive (46) to a temporary carrier (47); inkjet printing the crusted leather (45) on its grain side with one or more pigmented inkjet inks; wherein the surface area of the temporary carrier (47) is larger than the surface area of the crusted leather (45).
ACTIVE ENERGY RAY-CURABLE INKJET INK, INKJET RECORDED ARTICLE, AND METHOD FOR PRODUCING INKJET RECORDED ARTICLE
An active energy ray-curable inkjet ink containing polymerizable compounds and a polymerization initiator, wherein the polymerizable compounds include at least 5 types of polyfunctional polymerizable compounds having molecular weights within a range from 150 to 500, and include substantially no monofunctional polymerizable compounds.
ACTIVE ENERGY RAY-CURABLE INKJET INK, INKJET RECORDED ARTICLE, AND METHOD FOR PRODUCING INKJET RECORDED ARTICLE
An active energy ray-curable inkjet ink containing polymerizable compounds and a polymerization initiator, wherein the polymerizable compounds include at least 5 types of polyfunctional polymerizable compounds having molecular weights within a range from 150 to 500, and include substantially no monofunctional polymerizable compounds.
Composition, cured product, storage container, image forming apparatus, and image forming method
Provided is a composition including an acrylamide compound (A1) having a molecular weight of 150 or greater but 250 or less, and a trifunctional or higher polymerizable compound (A2), wherein an amount of the trifunctional or higher polymerizable compound (A2) is 1% by mass or greater but 30% by mass or less relative to a total amount of the composition.
ROSIN-MODIFIED RESIN AND METHOD FOR PRODUCING SAME, VARNISH FOR ACTIVE ENERGY RAY-CURABLE LITHOGRAPHIC INK, ACTIVE ENERGY RAY-CURABLE LITHOGRAPHIC INK, AND PRINTED PRODUCT
A rosin-modified resin having a structural unit (ab) derived from a compound obtained by addition of an ,-unsaturated carboxylic acid or acid anhydride thereof (B) to a conjugated rosin acid (A), a structural unit (c) derived from an organic monobasic acid (C) excluding the conjugated rosin acid (A), a structural unit (d) derived from an aliphatic polybasic acid anhydride (D), and a structural unit (e) derived from a polyol (E), wherein the weight ratio between the structural unit (ab) and the structural unit (c) is within a range from 100:80 to 100:350.
ROSIN-MODIFIED RESIN AND METHOD FOR PRODUCING SAME, VARNISH FOR ACTIVE ENERGY RAY-CURABLE LITHOGRAPHIC INK, ACTIVE ENERGY RAY-CURABLE LITHOGRAPHIC INK, AND PRINTED PRODUCT
A rosin-modified resin having a structural unit (ab) derived from a compound obtained by addition of an ,-unsaturated carboxylic acid or acid anhydride thereof (B) to a conjugated rosin acid (A), a structural unit (c) derived from an organic monobasic acid (C) excluding the conjugated rosin acid (A), a structural unit (d) derived from an aliphatic polybasic acid anhydride (D), and a structural unit (e) derived from a polyol (E), wherein the weight ratio between the structural unit (ab) and the structural unit (c) is within a range from 100:80 to 100:350.
PRINTING INK
This invention provides an inkjet ink comprising: an ,-unsaturated ether monomer in which the only radiation-curable functional groups present in the monomer are ,-unsaturated ether groups; a low-viscosity difunctional (meth)acrylate monomer in which the only radiation-curable functional groups present in the monomer are acrylate groups, wherein the low-viscosity difunctional (meth)acrylate monomer has a viscosity of 0.5 to 6.5 mPas at 25 C.; and a colouring agent; wherein the ink contains less than 5% by weight of water and volatile organic solvents in total, and less than 10% by weight of mono- and difunctional monomers in total, other than the ,-unsaturated ether monomer and the low-viscosity difunctional (meth)acrylate monomer, where the amounts by weight are based on the total weight of the ink, and wherein the ink has a viscosity of less than 30 mPas at 25 C.
PRINTING INK
This invention provides an inkjet ink comprising: an ,-unsaturated ether monomer in which the only radiation-curable functional groups present in the monomer are ,-unsaturated ether groups; a low-viscosity difunctional (meth)acrylate monomer in which the only radiation-curable functional groups present in the monomer are acrylate groups, wherein the low-viscosity difunctional (meth)acrylate monomer has a viscosity of 0.5 to 6.5 mPas at 25 C.; and a colouring agent; wherein the ink contains less than 5% by weight of water and volatile organic solvents in total, and less than 10% by weight of mono- and difunctional monomers in total, other than the ,-unsaturated ether monomer and the low-viscosity difunctional (meth)acrylate monomer, where the amounts by weight are based on the total weight of the ink, and wherein the ink has a viscosity of less than 30 mPas at 25 C.
INK JET RECORDING METHOD
Provided is an ink jet recording method including recording an infrared absorbing image by applying a first ink, which contains an infrared absorber and a first curable compound, onto an impermeable substrate by an ink jet method, semi-curing the infrared absorbing image by irradiating the infrared absorbing image with active energy rays, recording a non-infrared absorbing image by applying a second ink, which has a content of the infrared absorber of lower than 0.1% by mass and contains a second curable compound, to a surface of the substrate with the infrared absorbing image by the ink jet method, and curing the semi-cured infrared absorbing image and the non-infrared absorbing image by irradiating these images with active energy rays.