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Digital textile printing is often referred to as direct-to-garment printing (DTG printing), or digital garment printing. It is a process of printing on textiles and garments using specialized or modified inkjet technology. Inkjet printing on fabric is also possible with an inkjet printer by using fabric sheets with a removable paper backing.
Direct-to-garment printing (DTG) is a process of printing on textiles using specialized aqueous ink jet technology. DTG printers typically have a platen designed to hold the garment in a fixed position, and the printer inks are jetted or sprayed onto the textile by the print head. DTG typically requires that the garment be pre-treated with a ...
Digital textile printing is described as any ink jet based method of printing colorants onto fabric. Most notably, digital textile printing is referred to when identifying either printing smaller designs onto garments (T-shirts, dresses, promotional wear; abbreviated as DTG, which stands for Direct to garment printing) and printing larger designs onto large format rolls of textile.
This printing method is used on textiles including apparel such as T-shirts, jeans, jackets, hoodies, sportswear, and accessories like bags and belts. [citation needed] DTF is favored for its cost-effectiveness and capability to produce high-resolution prints. Specifically, for small batch printing, Direct to Film (DTF) printing is cost-effective.
Roller-printed cotton cushion cover panel, 1904, Silver Studio V&A Museum no. CIRC.675–1966 Indigo Blue & White printed cloth, American Printing Company, about 1910. Roller printing, also called cylinder printing or machine printing, on fabrics is a textile printing process patented by Thomas Bell of Scotland in 1783 in an attempt to reduce the cost of the earlier copperplate printing.
Digital textile printing has brought together the worlds of fashion, technology, art, chemistry, and printing to produce a new process for printing textiles on clothing. [3] Digital printing is a process in which prints are directly applied to fabrics with printer, reducing 95% the use of water, 75% the use of energy, and minimizing textile waste.
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