Liu Yuhan, Han Liuyang, Lv Siqi, Jiang Tao, Duan Mingkai, Guo Hanyu, Li Yuzhen, Xie Qisen, Chen Yanru, Wang Dongkai, Liu Ziheng, Zhang Wenjie, Gong Yanting, Zhong Junwen, Qian Xiang
Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen 518055, China.
Department of Electromechanical Engineering, Centre for Artificial Intelligence and Robotics, University of Macau, Macau 999078, China.
Research (Wash D C). 2025 Jun 3;8:0714. doi: 10.34133/research.0714. eCollection 2025.
Advanced haptic feedback interfaces are essential for human-machine interaction, particularly in assistive technologies that offer versatile commands, simplify navigation, and enhance emotional interactions for individuals with visual and hearing impairments. Current systems, primarily reliant on Braille and mechanical announcements, fall short of addressing these needs. Existing haptic interfaces, while providing various haptic feedback modes, still face challenges including rigid, strong current, or high-voltage stimulation, limiting their applicability and long-term safety for widespread use. Here, the work demonstrates a flexible, integrable, and programmable haptic interface based on elastomer actuators that utilize a unique forming process to create customized local stiffness in a multilayer elastomer by varying the cross-linking density of elastomers. Complemented by tailored software, the system delivers a 4-dimensional haptic experience within a safe voltage of less than 50 V and a frequency range of 50 to 450 Hz, enabling high-fidelity emotional and navigational feedback. Demonstrations of this system achieve an average accuracy rate of 64.6% in emotional interactions without prior training, improving to 95.8% with learning mode, along with an average accuracy rate of 94.2% for 9 directional commands in navigation interactions.
先进的触觉反馈接口对于人机交互至关重要,特别是在为视力和听力受损者提供通用命令、简化导航并增强情感交互的辅助技术中。当前系统主要依赖盲文和机械语音提示,无法满足这些需求。现有的触觉接口虽然提供了各种触觉反馈模式,但仍面临包括刚性、强电流或高压刺激等挑战,限制了它们在广泛应用中的适用性和长期安全性。在此,这项工作展示了一种基于弹性体致动器的灵活、可集成且可编程的触觉接口,该致动器利用独特的成型工艺通过改变弹性体的交联密度在多层弹性体中创建定制的局部刚度。辅以定制软件,该系统在小于50V的安全电压和50至450Hz的频率范围内提供四维触觉体验,实现高保真情感和导航反馈。该系统的演示在未经事先训练的情感交互中平均准确率达到64.6%,在学习模式下提高到95.8%,在导航交互中9个方向命令的平均准确率为94.2%。