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AUTONOMOUS MOTILITY OF POLYMER FILMS COUPLED TO STIMULI GRADIENTS

机译:耦合到刺激梯度的聚合物膜的自治性

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Adaptive soft materials exhibit a diverse set of behaviors including reconfiguration, actuation, and locomotion. These responses are typically optimized in isolation. Here, we explore the interrelation between these behaviors by developing a behavioral phase diagram for hygromorphic polymer films. We determine that the dynamic behaviors are a result of not only a response to, but also an interaction with a humidity gradient, which can be tuned via control of the environment and film characteristics, including size, permeability and coefficient of hygroscopic expansion to target a desired behavior such as multi-modal locomotion. Using the improved understanding of stimuli interactive materials gained from our study of monolithic polymer films, we demonstrate how robust composites can be designed to exhibit autonomous, environmentally-responsive behaviors, and how these concepts can be incorporated into origami structures to engineer the extent and sequence of motions.
机译:自适应软材料具有多种行为,包括重新配置,致动和运动。这些响应通常是单独进行优化的。在这里,我们通过开发用于吸湿性聚合物薄膜的行为相图来探索这些行为之间的相互关系。我们确定动态行为不仅是对湿度梯度的响应,而且是与湿度梯度的相互作用的结果,可以通过控制环境和薄膜特性(包括尺寸,渗透率和吸湿膨胀系数)来调节湿度梯度,从而达到目标。所需的行为,例如多模式运动。通过对我们从整体聚合物薄膜研究中获得的对刺激性交互作用材料的更好理解,我们证明了如何设计坚固的复合材料以表现出自主的,对环境敏感的行为,以及如何将这些概念整合到折纸结构中以设计程度和顺序动作

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