Instituto de Engenharia de Sistemas e Computadores-Microsistemas e Nanotecnologias (INESC-MN), Lisbon, Portugal.
Instituto Superior Técnico (IST), University of Lisbon, Lisbon, Portugal.
Sci Rep. 2024 Apr 3;14(1):7872. doi: 10.1038/s41598-024-56733-8.
Conventional snap fasteners used in clothing are often used as electrical connectors in e-textile and wearable applications for signal transmission due to their wide availability and ease of use. Nonetheless, limited research exists on the validation of these fasteners, regarding the impact of contact-induced high-amplitude artefacts, especially under motion conditions. In this work, three types of fasteners were used as electromechanical connectors, establishing the interface between a regular sock and an acquisition device. The tested fasteners have different shapes and sizes, as well as have different mechanisms of attachment between the plug and receptacle counterparts. Experimental evaluation was performed under static conditions, slow walking, and rope jumping at a high cadence. The tests were also performed with a test mass of 140 g. Magnetic fasteners presented excellent electromechanical robustness under highly dynamic human movement with and without the additional mass. On the other hand, it was demonstrated that the Spring snap buttons (with a spring-based engaging mechanism) presented a sub-optimal performance under high motion and load conditions, followed by the Prong snap fasteners (without spring), which revealed a high susceptibility to artefacts. Overall, this work provides further evidence on the importance and reliability of clothing fasteners as electrical connectors in wearable systems.
传统的按扣在服装中通常被用作电子纺织品和可穿戴应用中的电连接器,用于信号传输,因为它们具有广泛的可用性和易用性。尽管如此,关于这些紧固件的验证,尤其是在运动条件下接触引起的高振幅伪影的影响,研究仍然有限。在这项工作中,三种类型的紧固件被用作机电连接器,在常规袜子和采集设备之间建立接口。测试的紧固件具有不同的形状和尺寸,并且在插头和插座对应物之间具有不同的连接机制。在静态条件下、缓慢行走和高节奏跳绳下进行了实验评估。测试还在 140 克的测试质量下进行。磁性紧固件在有和没有附加质量的高度动态人体运动下表现出出色的机电鲁棒性。另一方面,已经证明,带有基于弹簧的接合机构的 Spring snap 按钮在高运动和负载条件下表现不佳,其次是 Prong snap 紧固件(没有弹簧),它们对伪影非常敏感。总的来说,这项工作进一步证明了服装紧固件作为可穿戴系统中电连接器的重要性和可靠性。