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The fabric is permanently dyed so it can be washed without damaging the quality of the image. Advantages of dye-sublimation over other methods of textile printing: [7] images are permanent and do not peel or fade, the dye does not build up on the fabric. Colors can be extraordinarily brilliant due to the bonding of the dye to the transparent ...
The second type of transfer paper is merely a substrate which ink is deposited onto, from which it is sublimated directly into the t-shirt fibers (requires at least 50% polyester fabric). The main advantages of this process are permanence and lack of a rough adhesive on the surface of the fabric.
For dye sublimation transfer paper, fabrics historically had to be white or light in color. 100% polyester, poly/cotton mix (the garment should be at least 50% polyester) microfibre and nylon can all be used. This printing process turns solid ink into a gas, avoiding a liquid stage.
Since the early 1990s, inkjet technology and specially developed water-based ink (known as dye-sublimation or disperse direct ink) have made it possible to print directly onto polyester fabric. This is mainly related to visual communication in retail and brand promotion (flags, banners and other point of sales applications).
A heat press is a machine engineered to imprint a design or graphic on a substrate, such as a t-shirt, with the application of heat and pressure for a preset period of time. While heat presses are often used to apply designs to fabrics , specially designed presses can also be used to imprint designs on mugs, plates, jigsaw puzzles, caps, and ...
Transfers made with sublimation-type inks literally transfer the pigments to the fabric and the pigments bond permanently to the fabric fibers. [1] Commercial quality heat transfer paper used in a heat press will yield much better results in terms of 'hand' (how the print feels on the fabric) and durability than store bought papers or transfers ...
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In thermodynamics, the enthalpy of sublimation, or heat of sublimation, is the heat required to sublimate (change from solid to gas) one mole of a substance at a given combination of temperature and pressure, usually standard temperature and pressure (STP). It is equal to the cohesive energy of the solid.