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Biomimetic Color Changing Anisotropic Soft Actuators with Integrated Metal Nanowire Percolation Network Transparent Heaters for Soft Robotics

机译:集成金属纳米线渗滤网络透明加热器的仿生变色各向异性软促动器,用于软机器人

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To add more functionalities and overcome the limitation in conventional soft robots, highly anisotropic soft actuators with color shifting function during actuation is demonstrated for the first time. The electrothermally operating soft actuators with installed transparent metal nanowire percolation network heater allow easy programming of their actuation direction and instantaneous visualization of temperature changes through color change. Due to the unique direction dependent coefficient of thermal expansion mismatch, the suggested actuator demonstrates a highly anisotropic and reversible behavior with very large bending curvature (2.5 cm(-1)) at considerably low temperature (approximate to 40 degrees C) compared to the previously reported electrothermal soft actuators. The mild operating heat condition required for the maximum curvature enables the superior long-term stability during more than 10 000 operating cycles. Also, the optical transparency of the polymer bilayer and metal nanowire percolation network heater allow the incorporation of the thermochromic pigments to fabricate color-shifting actuators. As a proof-of-concept, various color-shifting biomimetic soft robots such as color-shifting blooming flower, fluttering butterfly, and color-shifting twining tendril are demonstrated. The developed color-shifting anisotropic soft actuator is expected to open new application fields and functionalities overcoming the limitation of current soft robots.%1801847.1-1801847.8
机译:为了增加功能并克服传统软机器人的局限性,首次演示了在致动过程中具有色移功能的高度各向异性的软致动器。安装了透明金属纳米线渗滤网络加热器的电热操作软执行器可以轻松编程其执行方向,并通过颜色变化即时显示温度变化。由于独特的与方向相关的热膨胀系数不匹配,建议的执行器在相当低的温度(约40摄氏度)下表现出高度各向异性和可逆的行为,并且在非常低的温度(约40摄氏度)下具有非常大的弯曲曲率(2.5 cm(-1))报告了电热软执行器。最大曲率所需的温和的运行加热条件可在超过10 000个运行循环中提供卓越的长期稳定性。而且,聚合物双层和金属纳米线渗滤网络加热器的光学透明性允许掺入热致变色颜料以制造色移致动器。作为概念验证,展示了各种变色仿生软机器人,例如变色盛开的花朵,飘飘的蝴蝶和变色缠绕的卷须。已开发的变色各向异性软致动器有望突破现有软机器人的局限性,开拓新的应用领域和功能。%1801847.1-1801847.8

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