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| Material: | 100% Polyester |
| Width (cm): | 160 |
| Grammage (g/m²): | 135 |
| Pattern: | Retro, Botanist, Petals, Flowers, Dark |
| Features: | Smooth, Translucent, Mottled, Elastic |
| Application / Use: | Knitwear, T-shirts, Table Runners |
| Manufacturing Method: | Single-sided digital textile printing, all products are custom-made to order. |
| Care: |
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The fabric in question is the Punto Camiseta Jaspeado - Dubai, a knit fabric with a composition of 100% polyester and a weight of 135 gr/m2. Its width is 160 cm and it can be used for making knit garments for both men and women, especially t-shirts. Its attributes include a smooth and elastic texture that makes it comfortable to the touch, a translucent and mottled visual texture that gives it an interesting look and a fresh feel, and a retro and botanical look with a design of multicolored plants, petals, and flowers.
The digital textile printing is done on one side only, so the printed design is very sharp and appears visually vibrant and colorful. In addition, it is important to note that this fabric can be combined with other plain tones and is easily suitable for use in a variety of garment types.
The applications of the Punto Camiseta Jaspeado - Dubai are wide and can include the making of fashion garments such as t-shirts and knitwear. The fabric is comfortable to the touch and suitable for use throughout the year, which makes it very versatile for different designs and occasions.
As for care, it is recommended not to bleach, wash at no more than 30ºC, only dry clean except for trichloroethylene, and iron at low temperature; in addition, tumble drying is not allowed.
Finally, the digital sublimation printing technology used in the manufacture of this fabric is based on the transfer of ink from a printed transfer sheet to the fabric surface. This process produces a sharp and vibrant image that is also resistant to fading and deformation. Sublimation technology is especially suitable for polyester fibers, as the sublimation process only works for printing on surfaces that are coated with a polymer layer.