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Computational wrapping: A universal method to wrap 3D-curved surfaces with nonstretchable materials for conformal devices

机译:计算包装:具有包裹3D弯曲表面的通用方法,具有不合格的材料的共形设备

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This study starts from the counterintuitive question of how we can render conventional stiff, nonstretchable, and even brittle materials sufficiently conformable to fully wrap curved surfaces, such as spheres, without failure. Here, we extend the geometrical design method of computational origami to wrapping. Our computational wrapping approach provides a robust and reliable method for fabricating conformal devices for arbitrary curved surfaces with a computationally designed nonpolyhedral developable net. This computer-aided design transforms two-dimensional (2D)–based materials, such as Si wafers and steel sheets, into various targeted conformal structures that can fully wrap desired 3D structures without fracture or severe plastic deformation. We further demonstrate that our computational wrapping approach enables a design platform that can transform conventional nonstretchable 2D-based devices, such as electroluminescent lighting and flexible batteries, into conformal 3D curved devices.
机译:本研究从违反直觉的问题开始,我们如何呈现传统的刚性,不可挽回,甚至脆性材料,该问题充分适于完全包裹的弯曲表面,例如球体,没有故障。在这里,我们将计算折纸的几何设计方法扩展到包装。我们的计算包装方法提供了一种稳健且可靠的方法,用于制造用于任意弯曲表面的共形装置,其具有计算设计设计的非水显影网络。该计算机辅助设计将二维(2D)的基础材料(如Si晶片和钢板)转化为各种靶向保形结构,可以完全包围所需的3D结构,而无裂缝或严重的塑性变形。我们进一步证明,我们的计算包装方法使设计平台能够将传统的不可避免的2D基装置(例如电致发光照明和柔性电池)转换成共形3D弯曲装置。

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