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Forward and Inverse Design of Programmable Surfaces from Knitted Active Textiles

机译:针织活性纺织品的可编程表面的前向和逆设计

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Programmable surfaces and structures are mechanisms that transition between two or more geometric configurations. Programmable surfaces capable of altering their topology with a change in operational conditions have the potential to enable a wide range of applications in a variety of domains like haptics, wearables, human-computer interactions, fluid-surface interactions, and shape morphing structures. Prior research on programmable surfaces has developed various techniques to realize shape change applications. 4D printing includes multi-material printing of mechanisms that transform from any 1D or a 2D shape into a 3D shape using simple energy inputs like heat, water, or light. Additionally, origami composite structures with selective actuation of shape memory polymers also afford complex shape changes. We present a novel approach to designing programmable surfaces by incorporating shape memory alloys (SMA) and textile manufacturing processes to form variable topology programmable surfaces from knitted active textiles. Thermally responsive shape memory alloys (SMAs) leverage solid-state phase transformations and the shape memory effect to return the material to a predetermined state upon heating. The shape memory effect enables creation of multi-stiffness SMA configurations that can be utilized to develop structures with tunable surface topographies. Active knitted textiles act as programmable surfaces by transforming from an inactive 2D flat surface in the cold, flexible martensite state into active 3D surfaces when heated above the austenite finish transformation temperature.
机译:可编程表面和结构是两个或多个几何配置之间转换的机制。能够在操作条件的变化改变其拓扑的可编程表面具有可能在各种域中的各种域中的各种应用,如触觉,可穿戴物,人机相互作用,流体表面相互作用和形状传感结构。在可编程表面上的现有研究已经开发出各种技术来实现形状变化应用。图4D印刷包括使用像热量,水或光等简单的能量输入从任何1D或2D形状转换为3D形状的机构的多材料印刷。另外,具有选择性致动形状记忆聚合物的折纸复合结构也提供复杂的形状变化。我们通过结合形状记忆合金(SMA)和纺织制造工艺来设计一种新的方法来设计可编程表面,以形成来自针织活性纺织品的可变拓扑可编程表面。热响应形状记忆合金(SMA)利用固态相变和形状记忆效果,以在加热时将材料返回到预定状态。形状记忆效应使得能够创建多刚度SMA配置,该配置可用于开发具有可调谐表面地形的结构。活性针织纺织品作为可编程表面,通过在高于奥氏体结束变换温度以上的冷,柔性马氏体状态中从冷,柔性马氏体状态的平坦表面转变为有源3D表面。

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