Grellmann Henriette, Bruns Mathis, Lohse Felix Michael, Kruppke Iris, Nocke Andreas, Cherif Chokri
Institute of Textile Machinery and High Performance Material Technology, Technische Universität Dresden, 01062 Dresden, Germany.
Materials (Basel). 2021 Nov 24;14(23):7158. doi: 10.3390/ma14237158.
Electrically conductive filaments are used in a wide variety of applications, for example, in smart textiles and soft robotics. Filaments that conduct electricity are required for the transmission of energy and information, but up until now, most electrically conductive fibers, filaments and wires offer low mechanical elongation. Therefore, they are not well suited for the implementation into elastomeric composites and textiles that are worn close to the human body and have to follow a wide range of movements. In order to overcome this issue, the presented study aims at the development of electrically conductive and elastic filaments based on a coating process suited for multifilament yarns made of thermoplastic polyurethane (TPU). The coating solution contains TPU, carbon nanotubes (CNT) and N-Methyl-2-pyrrolidone (NMP) with varied concentrations of solids and electrically conductive particles. After applying the coating to TPU multifilament yarns, the mechanical and electrical properties are analyzed. A special focus is given to the electromechanical behavior of the coated yarns under mechanical strain loading. It is determined that the electrical conductivity is maintained even at elongations of up to 100%.
导电长丝被广泛应用于各种领域,例如智能纺织品和软体机器人技术。能量和信息的传输需要导电长丝,但到目前为止,大多数导电纤维、长丝和电线的机械伸长率较低。因此,它们不太适合应用于贴近人体穿着且必须适应多种动作的弹性复合材料和纺织品中。为了克服这个问题,本研究旨在基于一种适用于由热塑性聚氨酯(TPU)制成的复丝纱线的涂层工艺,开发导电且有弹性的长丝。涂层溶液包含TPU、碳纳米管(CNT)和N-甲基-2-吡咯烷酮(NMP),其固体和导电颗粒的浓度各不相同。将涂层施加到TPU复丝纱线上后,对其机械和电学性能进行分析。特别关注涂层纱线在机械应变载荷下的机电行为。结果表明,即使在伸长率高达100%时,电导率仍能保持。