
Why can film-coated take into account both material stability and visual expression?
Film-coated core fabric composition
The material basis of film-coated comes from a special knitted fabric, and its core characteristics are reflected in the precise balance between tightness and elasticity. This fabric is made of a composite knitting process of cotton and polyester. The cotton component gives the fabric a natural skin-friendly texture and basic toughness, while the polyester component enhances the fabric's anti-deformation ability through the stability of the molecular structure. The particularity of the knitting process allows the fabric fibers to form a tightly interwoven structure, so that the overall tightness reaches an excellent level. More importantly, this fabric has almost no elasticity, which makes it show significant advantages in scenes that require a fixed shape, avoiding functional failure or appearance damage caused by stretching deformation.
The visual and technological attributes given by the rainbow film
Based on the core fabric, film-coated achieves a breakthrough improvement in visual effects through the surface coating process, among which the application of the rainbow film is the finishing touch. This film is not a simple color attachment, but a microscopic optical structure is formed inside the film layer through special optical processing technology. When light hits the surface of the fabric, it will refract, reflect and interfere inside the film layer, and light of different wavelengths will visually present a gradient color similar to a rainbow. This color change is not fixed, but will produce a dynamic flow effect as the angle of the light source and the viewing angle change, giving film-coated a strong visual impact. The application of rainbow film also injects a distinct sense of technology into the product. The combination of optical principles and material technology behind it allows film-coated to have aesthetic value that surpasses traditional fabrics while maintaining practicality.
Water-repellent function upgrade brought by laminating process
The laminating process of film-coated optimizes visual performance and achieves key breakthroughs at the functional level, among which the realization of water-repellent effect is an important manifestation. In the composite process of rainbow film and fabric, the molecular structure characteristics of the film layer itself and the laminating process work together to form a dense protective barrier. When water molecules contact the surface of the fabric, they will form water droplets due to the surface tension of the film layer, and cannot penetrate into the fabric, thus achieving the water-repellent function. This water-repellent effect does not come at the expense of other properties of the fabric, but is a practical property added on the basis of maintaining the original tightness and shape stability of the fabric. It enables film coating to adapt to more diverse usage environments, reduce material aging or functional degradation caused by water contact, and extend the effective service life of the product.
Performance synergy and application adaptation of film-coated
The various characteristics of film coating form a mutually supporting performance system. The low elasticity and high tightness of the core fabric provide a stable base for the lamination process, ensuring that the rainbow film can be evenly attached and not easily fall off due to fabric deformation; the optical properties of the rainbow film improve the recognition and aesthetics of the product without affecting the original texture of the fabric; and the water-repellent function adds a layer of practical protection to the product in addition to visual and structural performance. This performance synergy allows film-coated to adapt to a variety of scene requirements, whether it is a structural application that needs to maintain a stable shape, a display scene that focuses on visual performance, or a daily environment with basic requirements for waterproofing, it can reflect its advantages.
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