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| Material: | 100% Polyester |
| Width (cm): | 160 |
| Grammage (g/m²): | 220 |
| Features: | Drawn out |
| Application / Use: | Hoodies, Toiletry bags, Hoodies, Backpacks, Tracksuit |
| Sustainability certificates: | GRS |
| Manufacturing Method: | Single-sided digital textile printing, all products are custom-made to order. |
| Care: |
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The Brushed Sweatshirt Fabric - Boston is a sweatshirt fabric with a composition of 100% polyester and a weight of 220 gr/m2. The width of the fabric is 160 cm and its solid printed color is an aquatic green with a CMYK of 63 0 57 0. This color transmits a feeling of calm and freshness, representing the connection with nature and water. It combines especially well with colors such as white, gray, and black. It is important to note that the fabric is printed on one side only using digital textile printing.
Among the general characteristics of the base fabric, we can highlight the brushed finish, which provides a softer and more pleasant texture to the touch. Regarding the printed color, we can say that it is resistant to wear, maintaining its intensity and brightness after several washes.
The Brushed Sweatshirt Fabric - Boston has multiple applications, such as in fashion for making sweatshirts and tracksuits for men, women, and children. It can also be used for making toiletry bags and backpacks, both for daily and sports use. Its season of use is concentrated in winter and autumn/winter 2021, being an ideal option for designers and brands committed to sustainability, as it has GRS certification and is made with recycled materials.
Regarding the care instructions for this fabric, it is recommended not to bleach and to wash at a maximum temperature of 40 degrees. It is important to avoid ironing and it can be tumble dried at a reduced temperature. In addition, it allows dry cleaning except for trichloroethylene.
The printing technology used to manufacture this fabric is sublimation, a process in which the design is printed directly onto the fabric using a special ink that evaporates upon contact with heat and pressure. This process offers high definition and durability in the designs, preventing them from wearing out over time.