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The term was later also applied to the indirect sublimation transfer printing process, which uses a standard ink-jet printer to deposit sublimation-capable ink onto a transfer sheet. The printed transfer sheet is then pressed with the substrate with heat, transferring the dye to the substrate, such as plastic or fabric, via sublimation.
Heat transfer vinyl (HTV) is a speciality polyurethane with a heat-activated adhesive (typically polyester-based) that can be used on certain fabrics and materials to apply designs to promotional products, textiles and apparel, such as T-shirts.
A heat press is used to permanently apply a heat transfer to a surface. Common transfer types are Heat Transfer Vinyl cut with a vinyl cutter, Printable Heat Transfer Vinyl, Inkjet Transfer Paper, Laser Transfer Paper, Plastisol Transfers, and Sublimation. Using a Heat Press to apply a heat transfer is a way to ensure accurate time, temperature ...
After the digital design is printed onto sublimation transfer sheets, it is placed on a heat press along with the substrate to be sublimated. [ citation needed ] In order to transfer the image from the paper to the substrate, it requires a heat press process that is a combination of time, temperature and pressure.
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.
The flexi disc (also known as a phonosheet, Sonosheet or Soundsheet, a trademark) is a phonograph record made of a thin, flexible vinyl sheet with a molded-in spiral stylus groove, and is designed to be playable on a normal phonograph turntable. Flexible records were commercially introduced as the Eva-tone Soundsheet in 1962.
[3] [4] Under extremely low oxygen partial pressure, strontium titanate decomposes via incongruent sublimation of strontium well below the melting temperature. [9] At temperatures lower than 105 K, its cubic structure transforms to tetragonal. [10] Its monocrystals can be used as optical windows and high-quality sputter deposition targets.
Its construction and principle of operation is simple. It consists of a titanium filament through which a high current (typically around 40 A) is passed periodically. This current causes the filament to reach the sublimation temperature of titanium, and hence the surrounding chamber walls become coated with a thin film of clean titanium.
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