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| Material: | 97% Cotton, 3% Elastane |
| Width (cm): | 150 |
| Grammage (g/m²): | 195 |
| Pattern: | Pictorial, Standard, Christmas, Artistic, Brilliant |
| Features: | Soft |
| Application / Use: | Pillowcases, Dresses, Shirts, Monkeys, Pants |
| Manufacturing Method: | Single-sided digital textile printing, all products are custom-made to order. |
| Care: |
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The Cotton Spandex Satin Fabric - White Tiger is a satin fabric with a composition of 97% cotton and 3% elastane. It has a weight of 195 gr/m2 and a width of 150 cm. Its printed design combines various styles such as Christmas, abstract, artistic, botanical, and decorative. Additionally, it features standard complexity in its artwork, providing a pictorial and shiny appearance. The main colors of the design are soft ivory white, dark slate blue, and cloudy gray.
This fabric is printed with the design on one side using digital textile printing technology. It is important to note that the design is only printed on one side of the fabric.
In terms of general characteristics, the fabric has a soft and pleasant texture to the touch, providing a high level of comfort. The printed design, on the other hand, offers a visually striking and unique appearance, which can be perfect for making garments or for home decoration.
Regarding applications and uses, this fabric is ideal for making pillowcases, napkins, dresses, shirts, jumpsuits, pants, shorts, Bermuda shorts, accessories, and purses. It can also be used in the home textile industry, especially in the design of bedroom and dining room products.
In terms of care, it is recommended not to bleach the fabric and to wash it at a maximum temperature of 30ºC. It also allows dry cleaning, with the exception of trichloroethylene. For ironing, a cool temperature should be used, and it can be tumble dried at a reduced temperature.
The printing technology used on this fabric is direct reactive digital printing (natural fibers). This technique allows for high precision in design reproduction, as well as excellent color fixation in the fabric fibers.