Abstract:
An apparatus for manufacturing a thermal transfer print sheet includes an image forming unit configured to form a film pattern including a first pattern and a second pattern on a releasing sheet, the first and second patterns being arranged to at least partially overlap each other, the first pattern being formed of toner that includes a binder resin having a first thermoplastic resin, the second pattern being formed of toner that includes a binder resin having a second thermoplastic resin that is in a homologous relation to the first thermoplastic resin, and a fixing unit configured to apply heat and pressure to the film pattern such that the film pattern is formed as a thermal transfer film releasably supported on the releasing sheet.
Abstract:
A toner for a thermal transfer printing sheet is advantageous in terms of a fixing property to a release sheet, durability against deformation upon cooling, and a property of holding an image-forming toner, in addition to grindability and chargeability of the toner. The toner for a thermal transfer printing sheet is characterized by comprising a negative-charged crystalline polyester resin, wherein the toner has an average particle size D50 (volume) of 20 to 50 μm.
Abstract:
A peeling sheet supply unit is formed along an endless belt and is configured to supply a peeling sheet having a peeling surface on the endless belt. A first resin sheet transfer device is provided at a downstream side of the peeling sheet supply unit, and is configured to form a resin sheet by transferring a thermoplastic toner to a first region of the peeling sheet. A second resin sheet transfer device is provided at a downstream side of the first resin sheet transfer device and is configured to form a resin sheet by transferring a thermoplastic toner to a second region of the peeling sheet, the second region having a region different from a region overlapped with the first region.
Abstract:
A label making apparatus of the present disclosure transfers and fuses a label forming toner to a label substrate, in a desired shape. The label substrate includes a release sheet, an adhesive layer formed by applying an adhesive on the release sheet, and a coat layer formed on the adhesive layer. The coat layer is formed from at least one or a combination of a monomer or an oligomer of polyester resin and a monomer or an oligomer of an acrylic resin. The coat layer has a thickness of from 1 to 5 μm.
Abstract:
A label mount of the present invention is characterized by containing: a release sheet 21; an adhesive layer 22 provided on a surface of the release sheet; and a coat layer 12 provided on the adhesive layer, containing a resin, and particles being harder as compared with the resin.
Abstract:
A method for forming a thermal transfer printing sheet, including (a) feeding a release sheet having a release surface; (b) transferring an image, which is to be thermally transferred and printed on a transfer medium, onto the release surface of the release sheet; (c) forming a thermoplastic resin pattern, which corresponds to the image as a transfer base material and which is to be colorless and transparent by heat and pressure, and transferring the thermoplastic resin pattern onto the release surface of the release sheet; and (d) fixing the image and the thermoplastic resin pattern onto the release surface of the release sheet in a film shape, through heat and pressure.