Silvestre Rocio, Garcia-Breijo Eduardo, Ferri Josué, Montava Ignacio, Bou-Belda Eva
Instituto Tecnológico del Textil (AITEX), 03801 Alcoy, Spain.
Instituto Interuniversitario de Investigación de Reconocimiento Molecular y Desarrollo Tecnológico (IDM), Universitat Politècnica de València, 46022 Valencia, Spain.
Polymers (Basel). 2023 Jan 28;15(3):668. doi: 10.3390/polym15030668.
Three-dimensional printing technology is being increasingly applied in a multitude of sectors. However, this technology is not generally applied in the same way as in other sectors, possibly due to the difficulty of adhesion between the polymer and the textile substrate. A textile garment is subjected to wear and tear during its lifetime, and a low tensile strength or rubbing resistance hinders a garment in most of the applications of this type of research. This study examined the influence of the characteristics of the cotton textile substrate, such as the weave structure and the yarn thickness, on the tensile strength of a 3D-printed element with conductive filament. Starting from the fabric with the highest tensile strength, different prints were made using this technology to incorporate conductive and heating properties into the fabric. The results validate the possibility of providing new properties to the textile by means of this technology; however, the correct selection of the textile used as a base substrate is important.
三维打印技术正越来越多地应用于众多领域。然而,这项技术的应用方式与其他领域通常不同,这可能是由于聚合物与纺织基材之间的粘附困难所致。纺织服装在其使用寿命期间会受到磨损,而低拉伸强度或耐磨性会在这类研究的大多数应用中阻碍服装的使用。本研究考察了棉纺织基材的特性,如织物结构和纱线粗细,对带有导电细丝的3D打印元件拉伸强度的影响。从具有最高拉伸强度的织物开始,利用这项技术进行不同的打印,以便将导电和加热特性融入织物中。结果验证了通过这项技术为纺织品赋予新特性的可能性;然而,正确选择用作基础基材的纺织品很重要。