Abstract:
Die vorliegende Erfindung betrifft eine Beschichtungszusammensetzung zur Herstellung eines wärmeempfindlichen Aufzeichnungsmaterials sowie eine entsprechende wärmeempfindliche Aufzeichnungsschicht. Die Beschichtungszusammensetzung umfasst einen oder mehrere Farbentwickler, einen oder mehrere Farbstoffvorläufer, ein oder mehrere spezifische Fettsäureamide sowie einen oder mehrere (weitere) spezifische Sensibilisatoren. Die vorliegende Erfindung betrifft zudem ein wärmeempfindliches Aufzeichnungsmaterial, umfassend ein Trägersubstrat und eine erfindungsgemäße wärmeempfindliche Aufzeichnungsschicht. Die vorliegende Erfindung betrifft darüber hinaus die Verwendung spezifischer Fettsäureamide zur Erhöhung der Fettbeständigkeit eines wärmeempfindlichen Aufzeichnungsmaterials oder einer wärmeempfindlichen Aufzeichnungsschicht. Die vorliegende Erfindung betrifft auch ein Verfahren zur Herstellung eines erfindungsgemäßen wärmeempfindlichen Aufzeichnungsmaterials oder einer wärmeempfindlichen Aufzeichnungsschicht.
Abstract:
Method for manufacturing paper printable with an inkjet printer for use as a decor paper in a laminate or laminated panel, wherein the method at least comprises the following steps: - the step of providing a paper layer (1); - the step of coating at least one side of said paper layer with an inkjet receiver coating (3) comprising pigment (6) and binder (7); wherein said inkjet receiver coating is applied in at least two partial steps, wherein respectively a first layer (4) with a first composition and, subsequently, a second layer (5) is applied with a second composition, both compositions at least comprising said binder. The invention also relates to the papers, as well as to method of manufacturing panels wherein the paper is provided with a printed pattern and used as a decor in the panels.
Abstract:
Ein Transfermaterial für das Farbstoff-Sublimationsübertragungsverfahren eines Inkjet- Druckbilds mit einem Träger und einer Farbaufnahmeschicht auf der Vorderseite des Transfermaterials umfasst eine poröse Farbaufnahmeschicht porös und enthält eine Barriereschicht, die entweder auf der Rückseite des Transfermaterials oder zwischen Träger und poröser Farbaufnahmeschicht angeordnet ist.
Abstract:
To provide a thermoreversible recording medium including a support, and a thermoreversible recording layer, which is disposed on the support, and contains a leuco dye, and a reversible color developer, wherein an average particle diameter of granules in the thermoreversible recording layer is 0.35 micrometers or smaller.
Abstract:
Provided is thermally imagable media in which selected areas may be thermally activated to change color. The thermally imagable media includes a substrate having a first and second surface, the first surface supporting a thermally imagable coating, an extender coating, and a top coating such that when activated the thermally imagable coating produces a visible color. The thermally imagable media is activated in a direct thermal printer.
Abstract:
A printable recording media containing a substrate and a coating layer including a mixture of a first polymer selected from the group consisting of a polymer comprising ethylene residues and vinyl alcohol residues and a polymer comprising vinyl alcohol residues and a second polymer comprising ethylene residues, ethyl acrylate or acrylic ester residues and maleic anhydride residues wherein the amount of first polymer, in the mixture, is about 50 % to about 95 % by weight. Also disclosed herein is a method for making such printable recording media.
Abstract:
This invention relates to a conductive thermal image receiver element that has an aqueous-based coatable dye-receiving layer comprising a water-dispersible acrylic polymer, a water-dispersible polyester, a water-dispersible conductive polymeric material and a surfactant. This invention also relates to a method for making this thermal image receiver element as well as method for using it to provide a dye image by thermal transfer from a donor element.
Abstract:
A printable recording media containing a substrate; a pre-coat layer including more than about 60 wt % of one or more inorganic pigments by total dry weight of the pre-coat layer; a topcoating layer including more than about 60 wt % of one or more inorganic pigments; up to 25 wt % of binders and up to about 5 wt % of a combination of natural and synthetic rheology modifiers, by total weight of the top-coating layer, wherein the ratio of the amount of natural rheology modifiers to the amount of synthetic rheology modifiers is from about 90:10 to about 50:50. Also disclosed herein is a method for making such printable recording media.
Abstract:
A conveyor line system, including: an image processing device configured to irradiate a recording part with laser light to record or erase, or record and erase an image, wherein the conveyor line system is configured to manage a conveying container containing the recording part, and wherein the following formula is satisfied at a wavelength of the laser light emitted from the image processing device when recording the image: A + 50 > B where A is an absorbance of the recording part, and B is an absorbance of the conveying container.
Abstract:
A colour laser markable laminate comprising: • a colour laser markable layer (11) comprising a leuco dye and an infrared absorbing compound; • an optional adhesive layer (12); • a polymeric support (13); and • an optional outerlayer (14); characterized in that the colour laser markable layer further comprises an acid scavenger and that the support, the optional adhesive layer or the optional outer layer comprises an UV absorbing compound.