Han Hye Ree
Department of Beauty Art Care, Graduate School of Dongguk University, Seoul 04620, Republic of Korea.
Materials (Basel). 2023 Feb 5;16(4):1351. doi: 10.3390/ma16041351.
With the development of convergence technology, the Internet of Things (IoT), and artificial intelligence (AI), there has been increasing interest in the materials industry. In recent years, numerous studies have attempted to identify and explore multi-functional cutting-edge hybrid materials. In this paper, the international literature on the materials used in hybrid fibers and manufacturing technologies were investigated and their future utilization in the industry is predicted. Furthermore, a systematic review is also conducted. This includes sputtering, electrospun nanofibers, 3D (three-dimensional) printing, shape memory, and conductive materials. Sputtering technology is an eco-friendly, intelligent material that does not use water and can be applied as an advantageous military stealth material and electromagnetic blocking material, etc. Electrospinning can be applied to breathable fabrics, toxic chemical resistance, fibrous drug delivery systems, and nanoliposomes, etc. 3D printing can be used in various fields, such as core-sheath fibers and artificial organs, etc. Conductive materials include metal nanowires, polypyrrole, polyaniline, and CNT (Carbon Nano Tube), and can be used in actuators and light-emitting devices. When shape-memory materials deform into a temporary shape, they can return to their original shape in response to external stimuli. This study attempted to examine in-depth hybrid fiber materials and manufacturing technologies.
随着融合技术、物联网(IoT)和人工智能(AI)的发展,材料行业受到越来越多的关注。近年来,众多研究试图识别和探索多功能前沿混合材料。本文对国际上有关混合纤维所用材料及制造技术的文献进行了调研,并预测了它们在该行业的未来应用。此外,还进行了系统综述。这包括溅射、电纺纳米纤维、3D(三维)打印、形状记忆和导电材料。溅射技术是一种环保型智能材料,不使用水,可作为一种优势的军事隐身材料和电磁屏蔽材料等。静电纺丝可应用于透气织物、耐有毒化学品、纤维药物递送系统和纳米脂质体等。3D打印可用于各种领域,如皮芯纤维和人工器官等。导电材料包括金属纳米线、聚吡咯、聚苯胺和碳纳米管(CNT),可用于致动器和发光器件。当形状记忆材料变形为临时形状时,它们可响应外部刺激恢复到原始形状。本研究试图深入研究混合纤维材料及制造技术。