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| Material: | 94% Polyester, 6% Elastane |
| Width (cm): | 147 |
| Grammage (g/m²): | 80 |
| Pattern: | Painting, Standard, Modern Art, Colorful, Dark |
| Features: | Transparent, Thin, Elastic |
| Application / Use: | Skirts, Dresses, Dresses, Bras / B ralettes, Panties |
| Manufacturing Method: | Single-sided digital textile printing, all products are custom-made to order. |
| Care: |
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The base fabric is Oslo Elastic Tulle, composed of 94% polyester and 6% elastane, with a weight of 80 gr/m2 and a width of 147 cm, suitable for fashion applications in skirts, dresses, accessories, and lingerie, such as bras, briefs, bodysuits, or bridal wear. In addition, it has notable attributes such as its transparent visual texture, its thin and elastic feel.
The printed design is a complex painting in a modern art style and colorful, with a predominance of multiple shades that provide a sophisticated and striking touch to the base fabric in combination with other plain colors. It should be noted that the fabric is printed with the stamped design on one side using digital textile printing.
This combination of the base fabric and the printed design gives the product a series of general characteristics such as softness to the touch, elasticity, and transparency, making it suitable for a wide variety of fashion applications. Furthermore, the printing technology used guarantees high definition and lasting quality in the stamped design.
Regarding the applications and uses of the base fabric, its use in childrens fashion can be highlighted, since its elastic capacity allows for greater comfort in daily use, as well as in lingerie, since its transparency makes it ideal for delicate and sensual garments.
The care that should be taken for this fabric is to avoid bleaching, maximum washing at 30ºC, do not dry clean or iron, and do not use a dryer.
The printing technology that this fabric enjoys is sublimation (polyester), a process that guarantees high definition and durability in the printed design, by converting solid ink directly into gas through the application of heat and pressure.