Patent classifications
C09D11/037
Low migration energy curable inks
The present invention provides energy curable ink and coating compositions that comprise polymerizable compounds, photoinitiators, and colorants. The polymerizable compounds comprise one or more polymerizable monomers and/or oligomers, wherein at least a portion is 3-methyl-1,5-pentanediol diacrylate. The inks and coatings of the invention exhibit excellent print properties after UV-LED, standard UV mercury vapor lamp, and electron beam cure.
High opacity white inks containing MICA-based minerals with titania
A high opacity white ink containing a mica-based mineral with titania is provided. A method of manufacturing the high opacity white ink is also provided.
High opacity white inks containing MICA-based minerals with titania
A high opacity white ink containing a mica-based mineral with titania is provided. A method of manufacturing the high opacity white ink is also provided.
Ultraviolet light stable color-changing systems
Disclosed herein are embodiments of (i) a novel stabilizer including a stable nitroxide free radical which can function as a light-stabilizer and/or a heat-stabilizer, and (ii) compositions including the stable nitroxide free radical.
Ultraviolet light stable color-changing systems
Disclosed herein are embodiments of (i) a novel stabilizer including a stable nitroxide free radical which can function as a light-stabilizer and/or a heat-stabilizer, and (ii) compositions including the stable nitroxide free radical.
AQUEOUS INK COMPOSITION FOR DECORATIVE SHEET, PRINTED ITEM, AND LAMINATE FOR DECORATIVE SHEET
An aqueous ink composition for a decorative sheet which can be printed without any disturbance of the printed portion caused by friction with the guide rollers or the like during printing, and also exhibits good permeability following immersion in an adhesive (impregnating solution) during post processing, and good adhesion to substrates following thermocompression bonding. Specifically, an aqueous ink composition for use on a base paper for a decorative sheet, the aqueous ink composition comprising a pigment and a water-soluble polyacrylamide resin (A).
AQUEOUS INK COMPOSITION FOR DECORATIVE SHEET, PRINTED ITEM, AND LAMINATE FOR DECORATIVE SHEET
An aqueous ink composition for a decorative sheet which can be printed without any disturbance of the printed portion caused by friction with the guide rollers or the like during printing, and also exhibits good permeability following immersion in an adhesive (impregnating solution) during post processing, and good adhesion to substrates following thermocompression bonding. Specifically, an aqueous ink composition for use on a base paper for a decorative sheet, the aqueous ink composition comprising a pigment and a water-soluble polyacrylamide resin (A).
IMPURITY DIFFUSION AGENT COMPOSITION AND METHOD FOR MANUFACTURING SEMICONDUCTOR SUBSTRATE
A diffusion agent composition that, even when a semiconductor substrate which is an object into which an impurity diffusion ingredient is to be diffused has, on a surface thereof, a three-dimensional structure having nano-scale fine voids on a surface thereof, can be evenly coated on the whole area of an inner surface of the fine voids, whereby boron can be diffused into the semiconductor substrate, and a method for manufacturing a semiconductor substrate using the composition. The composition includes an impurity diffusion ingredient and a hydrolyzable Si compound to produce a silanol group, the impurity diffusion ingredient containing a complex compound containing boron having a specific structure.
IMPURITY DIFFUSION AGENT COMPOSITION AND METHOD FOR MANUFACTURING SEMICONDUCTOR SUBSTRATE
A diffusion agent composition that, even when a semiconductor substrate which is an object into which an impurity diffusion ingredient is to be diffused has, on a surface thereof, a three-dimensional structure having nano-scale fine voids on a surface thereof, can be evenly coated on the whole area of an inner surface of the fine voids, whereby boron can be diffused into the semiconductor substrate, and a method for manufacturing a semiconductor substrate using the composition. The composition includes an impurity diffusion ingredient and a hydrolyzable Si compound to produce a silanol group, the impurity diffusion ingredient containing a complex compound containing boron having a specific structure.
Methods for Manufacturing Glow in-the-Dark Targets
Improvements in methods for manufacturing glow in-the-dark targets are disclosed. This provides an ink that produces images that will glow in the dark for an extended period of time after the ink has been exposed to natural or artificial light. This can be used for flexographic printing, offset printing, gravure printing, and screen printing applications. The ink includes a phosphorescent pigment and optionally includes a colorant on a substrate of paper, plastic or metal. The phosphorescent pigment material is not coated prior to mixing with other ink components. The pigment material has a particle diameter size of about 600 mesh to about 1500 mesh. The ink includes a colorant (optional), a thermoplastic resin binder, a charge-controlling agent, a release agent, as well as the phosphorescent pigment.