String actuated curved folded surfaces

M. Kilian, Áron Monszpart, N. Mitra
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引用次数: 5

Abstract

Curved folded surfaces, given their ability to produce elegant freeform shapes by folding flat sheets etched with curved creases, hold a special place in computational Origami. Artists and designers have proposed a wide variety of different fold patterns to create a range of interesting surfaces. The creative process, design, as well as fabrication is usually only concerned with the static surface that emerges once folding has completed. Folding such patterns, however, is difficult as multiple creases have to be folded simultaneously to obtain a properly folded target shape. We introduce string actuated curved folded surfaces that can be shaped by pulling a network of strings, thus, vastly simplifying the process of creating such surfaces and making the folding motion an integral part of the design. Technically, we solve the problem of which surface points to string together and how to actuate them by locally expressing a desired folding path in the space of isometric shape deformations in terms of novel string actuation modes. We demonstrate the validity of our approach by computing string actuation networks for a range of well-known crease patterns and testing their effectiveness on physical prototypes. All the examples in this article can be downloaded for personal use from http://geometry.cs.ucl.ac.uk/projects/2017/string-actuated/.
弦驱动的弯曲折叠曲面
弯曲的折叠面,由于它们能够通过折叠蚀刻有弯曲折痕的平面来产生优雅的自由形状,在计算折纸中占有特殊的地位。艺术家和设计师提出了各种不同的折叠模式来创造一系列有趣的表面。创意过程、设计和制作通常只涉及折叠完成后出现的静态表面。然而,折叠这样的图案是困难的,因为多个折痕必须同时折叠以获得适当折叠的目标形状。我们引入了弦驱动的弯曲折叠曲面,可以通过拉动弦网来塑造,从而大大简化了创建这种曲面的过程,并使折叠运动成为设计的一个组成部分。在技术上,我们用新颖的弦致动模式局部表达了等距形状变形空间中期望的折叠路径,从而解决了哪些表面指向串联在一起以及如何致动它们的问题。我们通过计算一系列众所周知的折痕图的弦致动网络并测试其在物理原型上的有效性来证明我们方法的有效性。本文中的所有示例都可以从http://geometry.cs.ucl.ac.uk/projects/2017/string-actuated/下载以供个人使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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