Connected fermat spirals for layered fabrication

制作 几何学 费马最后定理 数学 曲率 螺旋(铁路) 数学分析 离散数学 医学 病理 替代医学
作者
Haisen Zhao,Fanglin Gu,Qixing Huang,Jorge Saavedra,Yong Chen,Changhe Tu,Bedřich Beneš,Hao Zhang,Daniel Cohen‐Or,Baoquan Chen
出处
期刊:ACM Transactions on Graphics [Association for Computing Machinery]
卷期号:35 (4): 1-10 被引量:114
标识
DOI:10.1145/2897824.2925958
摘要

We develop a new kind of "space-filling" curves, connected Fermat spirals , and show their compelling properties as a tool path fill pattern for layered fabrication. Unlike classical space-filling curves such as the Peano or Hilbert curves, which constantly wind and bind to preserve locality, connected Fermat spirals are formed mostly by long, low-curvature paths. This geometric property, along with continuity, influences the quality and efficiency of layered fabrication. Given a connected 2D region, we first decompose it into a set of sub-regions, each of which can be filled with a single continuous Fermat spiral. We show that it is always possible to start and end a Fermat spiral fill at approximately the same location on the outer boundary of the filled region. This special property allows the Fermat spiral fills to be joined systematically along a graph traversal of the decomposed sub-regions. The result is a globally continuous curve. We demonstrate that printing 2D layers following tool paths as connected Fermat spirals leads to efficient and quality fabrication, compared to conventional fill patterns.

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