State Key Laboratory of Bioelectronics, School of Biological Science and Medical Engineering, Southeast University, Nanjing 210096, China.
ACS Appl Mater Interfaces. 2021 Feb 3;13(4):5574-5582. doi: 10.1021/acsami.0c20418. Epub 2021 Jan 21.
Soft actuators with perception capability are essential for robots to intelligently interact with humans and the environment. However, existing perceptive soft actuators require complex integration and coupling between the discrete functional units to achieve autonomy. Here, we report entirely soft actuators with embodied sensing, actuation, and control at the single-unit level. This is achieved by synergistically harnessing the mechanosensing and electrothermal properties of liquid metal (LM) to actuate the thermally responsive liquid crystal elastomer (LCE). We create multifunctional LM circuits on the LCE surface using a simple and facile methodology based on magnetic printing. The fluidic LM circuit can not only be utilized as a conformable resistive heater but also as a sensory skin to perceive its own deformation. Moreover, the rational design of the LM circuits makes it possible to achieve biomimetic autonomous actuation in response to mechanical stimuli such as pressure or strain. In addition, the intrinsic stretchability of LM allows us to create 3D spring-like actuators a simple prestretch step, and complex helical motions can be obtained upon mechanical stimulation. This work provides a unique and simple design for autonomous soft robotics with embodied intelligence.
具有感知能力的软体致动器对于机器人与人类和环境进行智能交互至关重要。然而,现有的感知软体致动器需要离散功能单元之间的复杂集成和耦合才能实现自主性。在这里,我们报告了在单个单元级别具有嵌入式感测、致动和控制功能的完全软体致动器。这是通过协同利用液态金属 (LM) 的机械传感和电热特性来致动对温度响应的液晶弹性体 (LCE) 实现的。我们使用基于磁印刷的简单而便捷的方法在 LCE 表面上创建多功能 LM 电路。流体 LM 电路不仅可用作可延展的电阻加热器,还可用作感测其自身变形的感测皮肤。此外,对 LM 电路的合理设计使得可以响应诸如压力或应变的机械刺激来实现仿生自主致动。此外,LM 的固有可拉伸性使我们能够创建 3D 弹簧状致动器——只需进行简单的预拉伸步骤,并且在机械刺激时可以获得复杂的螺旋运动。这项工作为具有嵌入式智能的自主软体机器人提供了一种独特而简单的设计。