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| Material: | 100% Organic cotton |
| Width (cm): | 145 |
| Grammage (g/m²): | 80 |
| Pattern: | Simple, Vector pattern, Photography, Clouds, Sky |
| Features: | Soft, Thin |
| Application / Use: | Shirts, Brides, Table Runners, Net curtains, Dresses |
| Sustainability certificates: | GOTS |
| Manufacturing Method: | Single-sided digital textile printing, all products are custom-made to order. |
| Care: |
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The Organic Cotton Voile Fabric - Cupid features a simply complex printed design, based on a vector pattern that simulates the sky and clouds in multi-colored hues. This design can perfectly combine with plain fabrics in ecru, light blue, or soft pink tones, achieving a soft and romantic look. It is important to mention that the print is on only one side of the fabric, printed using reactive direct digital technology, which ensures high print quality and excellent color fixation.
Regarding the general characteristics of the fabric, its soft texture stands out, providing comfort both to the touch and in its final use, as it is ideal for summer garments and accessories thanks to its light weight of 80 gr/m2. On the other hand, the base fabric is 100% organic cotton, which makes it sustainable and environmentally friendly. In terms of uses and applications, this fabric is perfect for making shirts, accessories, and bridal lingerie due to its softness and delicacy.
For the care of this fabric, it is recommended not to bleach, wash at a maximum temperature of 30ºC, dry cleaning is allowed, except with trichloroethylene, ironing should be done at a warm temperature, and it can be tumble dried at reduced temperature.
Regarding printing technology, reactive direct digital technique is used, which allows printing on natural fibers such as cotton, guaranteeing high quality in the colors and details of the design. This technique consists of applying dyes to the fabric using a specialized printer, which allows for high precision in the registration of colors and design details, avoiding the loss of quality that can occur in more conventional printing processes.