du Pasquier Cosima, Tessmer Lavender, Scholl Ian, Tilton Liana, Chen Tian, Tibbits Skylar, Okamura Allison
CHARM Laboratory, Stanford, CA, USA.
Self-Assembly Laboratory, Massachusetts Institute of Technology, Cambridge, MA, USA.
Sci Robot. 2024 Dec 18;9(97):eado3887. doi: 10.1126/scirobotics.ado3887.
Haptic devices typically rely on rigid actuators and bulky power supply systems, limiting wearability. Soft materials improve comfort, but careful distribution of stiffness is required to ground actuation forces and enable load transfer to the skin. We present Haptiknit, an approach in which soft, wearable, knit textiles with embedded pneumatic actuators enable programmable haptic display. By integrating pneumatic actuators within high- and low-stiffness machine-knit layers, each actuator can transmit 40 newtons in force with a bandwidth of 14.5 hertz. We demonstrate the concept with an adjustable sleeve for the forearm coupled to an untethered pneumatic control system that conveys a diverse array of social touch signals. We assessed the sleeve's performance for discriminative and affective touch in a three-part user study and compared our results with those of prior electromagnetically actuated approaches. Haptiknit improves touch localization compared with vibrotactile stimulation and communicates social touch cues with fewer actuators than pneumatic textiles that do not invoke distributed stiffness. The Haptiknit sleeve resulted in similar recognition of social touch gestures compared to a voice-coil array but represented a more portable and comfortable form factor.
触觉设备通常依赖于刚性致动器和庞大的电源系统,这限制了其可穿戴性。柔软的材料可提高舒适度,但需要仔细分布刚度,以便将致动力传递到地面并实现向皮肤的负载转移。我们展示了Haptiknit,这是一种方法,其中带有嵌入式气动致动器的柔软、可穿戴针织纺织品能够实现可编程触觉显示。通过将气动致动器集成在高刚度和低刚度的机器编织层中,每个致动器能够以14.5赫兹的带宽传递40牛顿的力。我们通过一个用于前臂的可调节袖子展示了这一概念,该袖子与一个无束缚的气动控制系统相连,该系统可传达各种社交触摸信号。我们在一项由三部分组成的用户研究中评估了该袖子在辨别性触摸和情感触摸方面的性能,并将我们的结果与先前的电磁驱动方法进行了比较。与振动触觉刺激相比,Haptiknit改善了触摸定位,并且与不采用分布式刚度的气动纺织品相比,使用更少的致动器就能传达社交触摸线索。与音圈阵列相比,Haptiknit袖子对社交触摸手势的识别效果相似,但呈现出更便携、更舒适的外形。