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Large-Magnitude Transformable Liquid-Metal Composites

机译:大幅度可变形液态金属复合材料

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摘要

Most of the existing robots would find it difficult to stretch and transform all parts of their body together due to rigid components and complex actuation mechanisms inside. Here, we presented a highly transformable liquid-metal composite (LMC) that is easy to change shape in large magnitude and resume its original state again according to need. When subject to heating, part of the ethanol droplets embedded in the composite would change phase and then actuate. We demonstrate the flexible transformation of LMC-made octopus from a two-dimensional shape into several predictable three-dimensional shapes freely on a large scale (even up to 11 times its initial height) through remote wireless heating, which needs no sophisticated operating system at all. Further, several designed behaviors, such as movement of octopus and entangling objects of soft robots, are also realized. Theoretical analysis of the heating-induced liquid–vapor transition of the embedded ethanol droplet interprets the mechanisms involved. The present findings open a new way to fabricate functional transformablecomposites that would find significant applications in developingfuture generation soft robots.
机译:大多数现有的机器人会发现由于内部刚性部件和复杂的致动机制,很难将其身体的所有部分一起拉伸和变形。在这里,我们提出了一种高度可变形的液态金属复合材料(LMC),该材料易于大幅度改变形状并根据需要再次恢复其原始状态。当受热时,嵌入复合物中的部分乙醇液滴会发生相变,然后启动。我们演示了通过远程无线加热将LMC制成的章鱼从二维形状灵活地自由大规模(甚至高达其初始高度的11倍)灵活地转换为几个可预测的三维形状的过程,该操作不需要复杂的操作系统。所有。此外,还实现了一些设计行为,例如章鱼的运动和软机器人的缠绕对象。对嵌入乙醇滴的加热引起的液体-蒸气转变的理论分析解释了所涉及的机理。本研究结果为制造功能可转化的产品开辟了一条新途径在开发中会发现重要应用的复合材料下一代软机器人。

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