From flapping birds to space telescopes: the modern science of origami

R. Lang
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引用次数: 18

Abstract

The last decade of this past century has been witness to a revolution in the development and application of mathematical techniques to origami, the centuries-old Japanese art of paper-folding. The techniques used in mathematical origami design range from the abstruse to the highly approachable. In this talk, I will describe how geometric concepts led to the solution of a broad class of origami folding problems - specifically, the problem of efficiently folding a shape with an arbitrary number and arrangement of flaps, and along the way, enabled origami designs of mind-blowing complexity and realism, some of which you'll see, too. As often happens in mathematics, theory originally developed for its own sake has led to some surprising practical applications. The algorithms and theorems of origami design have shed light on long-standing mathematical questions and have solved practical engineering problems. I will discuss examples of how origami has enabled safer airbags, Brobdingnagian space telescopes, and more.
从展翅鸟到太空望远镜:现代折纸科学
上个世纪的最后十年见证了数学技术在折纸上的发展和应用的革命,折纸是一种具有数百年历史的日本折纸艺术。在数学折纸设计中使用的技术范围从深奥到高度平易近人。在这次演讲中,我将描述几何概念是如何导致解决一系列折纸折叠问题的具体问题,即如何有效地折叠具有任意数量和排列的褶叶的形状,并在此过程中,使折纸设计具有令人兴奋的复杂性和现实性,其中一些你也会看到。正如在数学中经常发生的那样,最初为其本身而发展的理论已经导致了一些令人惊讶的实际应用。折纸设计的算法和定理揭示了长期存在的数学问题,并解决了实际的工程问题。我将讨论折纸如何使安全气囊、布罗卜丁纳吉空间望远镜等变得更安全的例子。
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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