Abstract:
Provided are a manufacturing method of a dispersion including a step A of preparing a mixture containing an edible pigment, an edible dispersant, and water, a step B of applying a hydrostatic pressure equal to or higher than 30 MPa to the mixture, and a step C of performing a dispersion treatment on the mixture to which the hydrostatic pressure is applied; a pigment dispersion for ink jet recording and a manufacturing method thereof; and an ink composition for an ink jet and a manufacturing method thereof.
Abstract:
Provided is an ink jet ink for electron beam curing including a polymerizable monomer, a hydrogen abstraction-type polymerization initiator including a polymerizable group, and a surfactant including a polymerizable group. Also provided are an ink set and an image recording method.
Abstract:
An image recording method including applying an ink for forming an alkali-peelable layer onto an impermeable substrate, applying an ink jet ink for electron beam curing, containing a pigment and polymerizable monomers, onto the ink for forming an alkali-peelable layer applied onto the impermeable substrate, and irradiating the ink jet ink for electron beam curing applied onto the impermeable substrate with electron beams.
Abstract:
Provided is an image recording method including a step of preparing at least two ink compositions including a first ink composition that contains a polymerizable liquid crystal compound, a chiral compound, a polymerization initiator, and an organic solvent and a second ink composition that contains a polymerizable liquid crystal compound, a chiral compound, a polymerization initiator, and an organic solvent, a step of applying the first ink composition onto a substrate by an inkjet recording method, a step of forming a first ink film by irradiating the first ink composition applied onto the substrate with an active energy ray, a step of applying the second ink composition onto the first ink film by an inkjet recording method, and a step of forming a second ink film by irradiating the second ink composition applied onto the first ink film with an active energy ray, in which the first ink film has a hexadecane-contacting angle of 45° or less.
Abstract:
Provided is an image forming method including a step of imagewisely applying, onto a base material by an inkjet method, at least two inks containing a polymerizable liquid crystal compound, a chiral compound, and a polymerization initiator and having reflection wavelengths different from each other, such that the total application amount of the inks provides an image area ratio of 50% or more in an image forming region.
Abstract:
Provided are an ink composition for ink jet printing, and an image forming method and a recorded material using the ink composition for ink jet printing. The ink composition for ink jet printing includes: a colorant represented by the following Formula 1; resin particles; a water-soluble organic solvent; and water.In Formula 1, Y1 and Y2 each independently represent a non-metal atomic group which forms an aliphatic ring or a heterocycle, M+ represents a proton or a monovalent alkali metal cation or organic cation, L1 represents a methine chain consisting of 5 or 7 methine groups, and a methine group at a center of the methine chain has a specific substituent.
Abstract:
Provided is a method of producing a transparent resin base printed material, including: a treatment liquid applying step of applying a treatment liquid which contains an acidic compound onto a transparent resin base material; an ink jetting step of jetting an aqueous ink, which contains a colorant, resin particles, water, and a solvent having a boiling point of 150° C. to 250° C. and in which the content of a solvent having a boiling point of higher than 250° C. is 1% by mass or less with respect to the total mass of the ink, onto the transparent resin base material to which the treatment liquid has been applied according to an ink jet system; and a drying step of drying the aqueous ink under a condition in which the surface temperature of the transparent resin base material is in a range of 60° C. to 100° C.
Abstract:
An ink jet recording method includes, in order, a jetting step of jetting an ink including an organic solvent, an oligomer having an ethylenically unsaturated group, and a pigment, and not including a polymerization initiator or including a polymerization initiator at a content of more than 0% by mass and 0.1% by mass or less onto a base material using an ink jet head, a drying step of drying the ink by removing at least a part of the organic solvent in the jetted ink, and a curing step of curing the dried ink with an electron beam.
Abstract:
Disclosed is a process for producing a decorative sheet, the process comprising a discharge step of discharging an ink composition onto a recording medium, a drying step of drying the ink composition above the recording medium by means of heat, and a curing step of curing the ink composition above the recording medium by means of a light source having a peak wavelength of 200 nm to 300 nm, the ink composition comprising (Component A) a polymer compound comprising a monomer unit (a-1) having a partial structure represented by Formula (1) below and a monomer unit (a-2) having a hydrophilic group, (Component B) water, and (Component C) a pigment.
Abstract:
Provided are an active energy ray-curable inkjet ink containing metal particles, a polymerizable compound, and a polymerization inhibitor, in which the metal particles have a specific gravity of 3 or more, in a cross section of an ink film having a thickness of 1 μm or more, which is obtained by curing a solution prepared by adjusting a content of the metal particles in the active energy ray-curable inkjet ink to 0.5% by mass, 50% by mass or more of a total mass of the metal particles is present in a region within 100 nm from a surface of the ink film to an inside of the ink film, and a surface tension of the active energy ray-curable inkjet ink is 30 mN/m or more; and an image recording method.