3D Printing on Textiles – Overview of Research on Adhesion to Woven Fabrics

IF 0.7 Q3 MATERIALS SCIENCE, TEXTILES
Tanja Nuša Kočevar
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引用次数: 0

Abstract

3D printing on textiles has great potential to influence developments in various industries. It enables the production of new, potentially personalised products in areas such as technical textiles, protective clothing, medical products, fashion, textile and interior design. 3D printing can also contribute to waste-free production processes. In the method of 3D printing on textiles, the material is applied directly to the textile substrate to create 3D objects, patterns or designs on the surface. The fused deposition modelling (FDM) technology, where thermoplastic filaments are extruded and deposited in thin layers based on a 3D model, is widely used for this purpose. A precise control of factors such as temperature and speed is essential in FDM to regulate the flow of polymer material during the printing process. The most commonly used polymer for 3D printing on textiles using FDM is polylactic acid (PLA). Acrylonitrile butadiene styrene (ABS) is another widely used material, known for its low shrinkage rate and high printing accuracy, while thermoplastic polyurethane (TPU) is used due to its exceptional mechanical properties, e.g. tensile strength, flexibility, durability and corrosion resistance. Good adhesion between 3D printed objects and the textile surface is essential for the production of quality products. Adhesion depends on various factors, e.g. textile properties, printing parameters and the type of polymer used. The composition of the woven fabric, including the areal density, warp and weft density, yarn count, fabric thickness and weave pattern, significantly affects the adhesion strength of the 3D printed polymer. When considering double weaves, which allow different materials in the upper and lower layers, better adhesion properties are found than at single weaves. A cross-sectional analysis revealed that the polymer penetrates deeper into a double-woven fabric, resulting in improved adhesion. In general, the study highlights the advantages of double weaves for 3D printing applications on textiles.
纺织品上的3D打印——机织织物附着力研究综述
纺织品上的3D打印具有巨大的潜力,可以影响各个行业的发展。它能够在技术纺织品、防护服、医疗产品、时装、纺织品和室内设计等领域生产新的、可能个性化的产品。3D打印还有助于实现零浪费的生产过程。在纺织品上的3D打印方法中,将材料直接应用于纺织品基材上,在表面上创建3D物体、图案或设计。熔融沉积建模(FDM)技术被广泛用于这一目的,其中热塑性长丝被挤出并沉积在基于3D模型的薄层中。在FDM中,精确控制温度和速度等因素对于调节打印过程中聚合物材料的流动至关重要。使用FDM在纺织品上进行3D打印最常用的聚合物是聚乳酸(PLA)。丙烯腈-丁二烯-苯乙烯(ABS)是另一种广泛使用的材料,以其低收缩率和高印刷精度而闻名,而热塑性聚氨酯(TPU)因其卓越的机械性能而被使用,例如拉伸强度,柔韧性,耐久性和耐腐蚀性。3D打印对象与纺织品表面之间良好的附着力对于生产高质量的产品至关重要。附着力取决于各种因素,如纺织性能、印刷参数和所用聚合物的类型。机织织物的组成,包括面密度、经纬密度、纱线支数、织物厚度和编织图案,对3D打印聚合物的粘附强度有显著影响。当考虑双层编织时,它允许不同的材料在上层和下层,发现比单编织更好的粘合性能。横截面分析表明,聚合物可以深入渗透到双层织物中,从而提高附着力。总的来说,该研究强调了双编织在纺织品上3D打印应用的优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
TEKSTILEC
TEKSTILEC MATERIALS SCIENCE, TEXTILES-
CiteScore
1.30
自引率
14.30%
发文量
22
审稿时长
12 weeks
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