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Active Surface with Dynamic Microstructures and Hierarchical Gradient Enabled by in situ Pneumatic Control

机译:具有动态微结构的活动表面和通过原位气动控制使能和分层梯度

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摘要

An active surface with an on-demand tunable topography holds great potential for various applications, such as reconfigurable metasurfaces, adaptive microlenses, soft robots and four-dimensional (4D) printing. Despite extensive progress, to achieve refined control of microscale surface structures with large-amplitude deformation remains a challenge. Moreover, driven by the demand of constructing a large area of microstructures with increased complexity—for instance, biomimetic functional textures bearing a three-dimensional (3D) gradient—novel strategies are highly desired. Here, we develop an active surface with a dynamic topography and three-tier height gradient via a strain-tunable mismatching-bonding process. Pneumatic actuation allows for rapid, reversible and uniform regulation of surface microstructures at the centimeter scale. The in-situ modulation facilitates large-amplitude deformation with a maximum tuning range of 185 μm. Moreover, the structural gradient can be modulated by programming the strain value of the bonding process. With our strategy, another two types of surfaces with a four-tier gradient and without gradient were also prepared. By providing active modulation and design flexibility of complicated microstructures, the proposed strategy would unlock more opportunities for a wealth of novel utilizations.
机译:具有按需可调性地形的有源表面可实现各种应用的巨大潜力,例如可重新配置的Metasurfaces,自适应微透镜,软机器,四维(4D)印刷。尽管进行了广泛的进步,但要实现对具有大幅度变形的微观表面结构的精细控制仍然是一个挑战。此外,通过构建大面积的微观结构的需求以及增加的复杂性 - 例如,非常需要承载三维(3D)梯度新策略的仿生功能纹理。这里,我们通过应变可调的不匹配键合工艺开发具有动态地形和三层高度梯度的活性表面。气动致动允许在厘米刻度下快速,可逆和均匀地调节表面微结构。原位调制有助于大幅度变形,最大调谐范围为185μm。此外,可以通过编程键合过程的应变值来调制结构梯度。通过我们的策略,还准备了另外两种类型的渐变和无梯度的表面。通过提供复杂的微观结构的主动调制和设计灵活性,拟议的策略将为丰富的新颖利用而解锁更多机会。

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