Granberry Rachael, Eschen Kevin, Holschuh Brad, Abel Julianna
Department of Design, Housing, and Apparel University of Minnesota.
Department of Mechanical Engineering University of Minnesota.
Adv Mater Technol. 2019 Nov;4(11). doi: 10.1002/admt.201900548.
Advances in actuating fabrics can enable a paradigm shift in the field of smart wearables by dynamically fitting themselves to the unique topography of the human body. Applications including soft wearable robotics, continuous health monitoring, and body-mounted haptic feedback systems are dependent upon simultaneous body proximity and garment stiffness for functionality. Passive fabrics and fitting mechanisms are unable to conform around surface concavities and require either high elasticity or a multiplicity of closure devices to achieve garment fit. The design, manufacture, and validation of the first circumferentially contractile and topographic self-fitting garments composed of NiTi-based shape memory alloy (SMA) knitted actuators that dynamically conform to the unique shape and size of the wearer's body in response to a change of the garment's temperature is introduced. Advanced materials and systems innovations 1) enable novel garment manufacturing and application strategies, 2) facilitate topographical fitting (spatial actuation) through garment architectural design, and 3) provide tunable NiTi-based SMA actuation temperatures to enable actuation on the surface of human skin. This research represents a paradigm shift for wearable applications by redefining garment fit to fully topographical conformation to the wearer through advanced materials and structures design.
致动织物的进展能够通过动态贴合人体独特的地形,在智能可穿戴设备领域引发范式转变。包括软可穿戴机器人技术、连续健康监测以及身体佩戴式触觉反馈系统在内的应用,其功能依赖于与身体的接近程度以及服装的刚度。被动织物和贴合机制无法贴合表面凹陷处,需要高弹性或多种闭合装置来实现服装的合身性。本文介绍了首款由镍钛基形状记忆合金(SMA)针织致动器组成的周向收缩且地形自适应的服装的设计、制造和验证,该服装能根据服装温度变化动态贴合穿着者身体的独特形状和尺寸。先进材料和系统创新:1)实现新颖的服装制造和应用策略;2)通过服装结构设计促进地形贴合(空间致动);3)提供可调的镍钛基SMA致动温度,以实现人体皮肤表面的致动。这项研究通过先进的材料和结构设计,重新定义服装贴合度,使其完全地形贴合穿着者,代表了可穿戴应用的范式转变。