Cot María, Mijas Gabriela, Prieto-Fuentes Remedios, Riba-Moliner Marta, Cayuela Diana
Terrassa Institute of Textile Research and Industrial Cooperation (INTEXTER), Universitat Politècnica de Catalunya (UPC), 08222 Terrassa, Spain.
Department of Materials Science and Engineering (CEM), Universitat Politècnica de Catalunya (UPC), 08222 Terrassa, Spain.
Polymers (Basel). 2024 Feb 8;16(4):475. doi: 10.3390/polym16040475.
The inclusion of particles in a polymeric substrate to achieve certain properties is a well-known practice. In the case of textile substrates, this practice may deeply affect the structure of the produced yarns, as even a filament with no textile applications can be obtained. In this manuscript, titanium dioxide (TiO) particles were incorporated into polyester (PET) chips and the influence of these fillers on the properties of yarn and fabric, and the ultraviolet protection factor (UPF) was assessed. For this purpose, rutile and anatase crystalline forms of TiO, as well as the size of the particles, were evaluated. Moreover, parameters such as mechanical properties, orientation of the macromolecules and thermal behavior were analyzed to ensure that the textile grade is maintained throughout the production process. The results showed that the inclusion of micro- and nanoparticles of TiO decreases the molecular weight and tenacity of PET. Also, although orientation and crystallinity varied during the textile process, the resulting heatset fabrics did not present important differences in those parameters. Finally, the attainment of textile-grade PET-TiO fabrics with UPF indexes of 50+ with both rutile and anatase and micro- and nano-sized TiO forms was demonstrated.
在聚合物基体中加入颗粒以获得某些性能是一种众所周知的做法。就纺织基体而言,这种做法可能会深刻影响所生产纱线的结构,因为甚至可以得到没有纺织用途的长丝。在本论文中,将二氧化钛(TiO)颗粒加入聚酯(PET)切片中,并评估了这些填料对纱线和织物性能以及紫外线防护系数(UPF)的影响。为此,对TiO的金红石型和锐钛矿型晶体形式以及颗粒尺寸进行了评估。此外,还分析了诸如机械性能、大分子取向和热行为等参数,以确保在整个生产过程中保持纺织级质量。结果表明,加入TiO的微米和纳米颗粒会降低PET的分子量和强度。而且,虽然在纺织过程中取向和结晶度会发生变化,但最终的热定形织物在这些参数方面没有呈现出重要差异。最后,证明了使用金红石型和锐钛矿型以及微米和纳米尺寸的TiO形式都能获得UPF指数为50+的纺织级PET-TiO织物。