Abstract:
A thermosensitive recording material is provided having improved resistance to heat and chemicals, and having improved sensitivity to image formation while minimizing background coloring, wherein the thermosensitive recording material has a substrate, on which is a thermosensitive recording layer containing a leuco dye, a developer of formula (I) and at least two sensitizers, the two sensitizers being 4-hydroxy-4null-allyloxy diphenylsulfone and 4,4null-diallyloxy diphenylsulfone.
Abstract:
The present invention provides a laser recording thermally sensitive recording medium comprising a thermally sensitive recording layer containing at least a photo absorbing material which absorbs laser ray and covert it to heat, an electron donning leuco dye and an electron accepting color developing agent on a substrate, wherein said electron donning leuco dye contains a leuco dye which absorbs the ray of visible range and a leuco dye having main wave length of absorption at the ray of 600 nm or longer.
Abstract:
A colored metal sheet useful as a decorative member, a multi-colored signboard, etc. is provided by transfer-printing a topcoat or clear paint layer 4 formed on a substrate metal sheet 1 with a sublimation dye. A basecoat paint layer 2 and a primer paint layer 3 may be formed between the substrate metal sheet 1 and the paint layer 4. A sublimation dye penetrates into the paint layer 4 to form colored parts 5 extending along thickness direction of the paint layer 4. Glass flakes 6 (of 8 nullm or less in thickness and 10-70 nullm in length) and calcium silicate (of 1-8 nullm in primary particle size) may be dispersed in the paint layer 4, to improve slippage-proof property and wear-resistance. Powdery silica (of 0.5-8 nullm in particle size) may be dispersed in the paint layer 4, to improve anti-scratching property and wear-resistance. Light-resistance of the paint layer 4 is improved by using a topcoat or clear paint mainly composed of a melamine-containing thermosetting polyester resin having number average molecular weight of 1000-10000 and a glass transition temperature (Tg) of 20-60null C.
Abstract:
The present invention provides a heat-sensitive recording material having a support and a heat-sensitive recording layer, which contains a diazonium salt compound and a coupler compound that reacts with the diazonium salt to develop a color, wherein the recording material contains an oxonol dye.
Abstract:
A reversible multicolor recording medium includes a supporting substrate, and recording layers which have, respectively, a plurality of reversible thermal coloring compositions having different colors. The recording layers are separated from and stacked on one another on the supporting substrate. The reversible thermal coloring compositions respectively include light-to-heat transforming materials which respectively absorb infrared rays having different wavelength ranges to generate heat.
Abstract:
Economical and improved pull apart fragrance sampling device constructed of a film to film laminate. The mechanism for release of fragrance is accomplished by providing a microcapsule layer between a top ply and a bottom ply, which upon drying holds the overlying plies together, the microcapsules rupture upon peeling the top ply from the bottom ply, the fragrance is thereby released. A sampler produced as disclosed provides greater stability and shelf life than a paper sampler product while dramatically reducing manufacturing and raw material costs due to it's construction. The sampler provides the maximum flexibility in use and manufacture at a minimum cost.
Abstract:
A black matrix can be formed by thermal transfer on a receptor substrate for use, for example, in a display application. This black matrix can be used, for example, as a color filter black matrix or a TFT (thin film transistor) black matrix to provide contrast and/or to separate adjacent electrically-conducting components.
Abstract:
A receiving paper for thermal transfer recording, having a paper substrate; an ink receiving layer located overlying one side of the paper substrate and configured to receive a heat-melted or heat-softened ink; and a tackifying layer located overlying another side of the substrate, wherein the ink receiving layer is formed by coating an ink receiving layer forming liquid including a resin emulsion overlying the paper substrate; and heating the coating of ink layer forming liquid to a temperature not less than a minimum filming temperature of the resin emulsion.
Abstract:
A heat-sensitive recording material which has a heat-sensitive recording layer formed on a surface of a substrate, the recording layer comprising a basic chromogenic dye precursor and a developer, wherein as the developer, there is used a mixture comprising 5 to 95 wt % of 2,2-dimethyl-1,3-bis(4-hydroxybenzoyloxy)propane and 95 to 5 wt % of 4,4null-hydroxydiphenyl sulfone.
Abstract:
Disclosed is a thermal dye transfer imaging donor element and a dye combination comprising a combination of dyes including a magenta dye and a yellow dye exhibiting an RMS error of less than 0.015.