Abstract:
A heat transcription film comprising, a substrate film, a release agent layer formed on said substrate film, a color-ink printed layer formed on said release agent layer, a transparent-ink printed layer formed on said color-ink printed layer, a aluminum (Al) layer formed on said transparent-ink printed layer, and a partially bonded layer partially coated on said Al layer with a binder or adhesive in order to bind a predetermined object and partially show a color of said color-ink printed layer from the predetermined transcribed object.
Abstract:
In the present invention concerning a dissolution type thermal transfer film for three dimensional patterns and a method for manufacturing the same film, the simplification and speed of a pollution-free dry printing process and various types of decoration are achieved by transferring the thermal transfer film according to the invention to an article to be decorated made of wood or plastic molded material only with the use of heat and pressure and by subsequently forming a desired decoration in three-dimensional pattern through two dissolution processes, wherein the thermal transfer film comprises a base film consisting of polyester, polypropylene or polyvinylchloride without a mat agent or coated with a mat agent to provide a unglazed film, an optional releasing layer based on acrylic resin as the main component having separability to be mounted on the top of the base film, a print layer made of a water-soluble acryl-based resin, or water-soluble or alcoholic vinyl-based resin having dissolving power on the top of the optional releasing layer, a metal powder-printed layer or metal vapor-deposited layer, a thermosetting protective layer, a secondary acryl-based print layer and finally an adhesive layer coated in that order.
Abstract:
Disclosed is a thermal transfer paper comprising a metal layer and capable of partially dissolving the metal layer, which comprises a dissolving function formed of at least one resin selected from the group consisting emulsion resins, water-soluble acryl resins, water-soluble polybutyral resins, alcohol-soluble polybutyral resins, water-soluble vinyl resins and alcohol-soluble vinyl resins, water or an alcohol solvent, and sodium hydroxide or an acid on the metal layer. The thermal transfer paper according to the present invention is provided with a dissolving function layer 30 able to dissolve a part of a metal layer 20, preferably an aluminum deposition layer 21 to form a dissolved part according to a desired design or pattern. Therefore, it is possible to produce unique color and texture, unlike a metal layer pattern formed by oxidation of a part on the metal layer. Specially, when a different color is transferred on a transfer object by an ink layer formed on the transfer paper, it is harmonized with a background color of the transfer object to produce a partial metal-like effect. Thus, according to the present invention, a design with superior texture and color can be readily formed in various patterns, thereby accomplishing a speedy, simple and thereby efficient working process for production and cost saving effect.
Abstract:
In the present invention concerning a dissolution type thermal transfer film for the dimensional patterns and a method for manufacturing the same film, the simplification and speed of a pollution-free dry printing process and various types of decoration are achieved by transferring the thermal transfer film according to the invention to an article to be decorated made of wood or plastic molded material only with the use of heat and pressure and by subsequently forming a desired decoration in three-dimensional pattern through two dissolution processes, wherein the thermal transfer film comprises a base film consisting of polyester, polypropylene or polyvinylchloride without a mat agent or coated with a mat agent to provide a unglazed film, an optional releasing layer based on acrylic resin as the main component having separability to be mounted on the top of the base film, a print layer made of a water-soluble acryl-based resin, or water-soluble or alcoholic vinyl-based resin having dissolving power on the top of the optional releasing layer, a metal powder-printed layer or metal vapor-deposited layer, a thermosetting protective layer, a secondary acryl-based print layer and finally an adhesive layer coated in that order. (FIG. 1).
Abstract:
The present invention relates to a forming method using a thermal transfer printing sheet which is capable of implementing a 3D pattern through a method of forming a protruded surface using a thermal conduction difference of each portion in such a manner that a partial deposition thermal transfer printing sheet is printed on a surface of a base material of a plastic related thing, or a gold silver thin film is partially printed by a carving roller, and then the printed surface is heated to a certain temperature, so that the surface is divided into a heat blocked portion and a heat absorbed portion. In the forming method using a partial deposition thermal transfer printing sheet or a gold silver thermal transfer printing sheet according to the present invention, a thermal transfer printing sheet is drynullprinted using only a heat and pressure, and a protruded surface is easily formed through a thermal diffusion process. It is possible to form various natural protruded surfaces. A work process is simple, and an excellent 3D pattern and economical product are implemented. In addition, it is possible to form various natural 3D patterns without any limit in the size of the base material or the type of the roller.