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CrossFill: Foam Structures with Graded Density for Continuous Material Extrusion

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arxiv 1906.03027 v1 pith:3CCGTFLG submitted 2019-06-07 cs.CG cs.GR

classification cs.CGcs.GR
keywords crossfillextrusioncontinuousdensitygradedmaterialprintingstructure
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The fabrication flexibility of 3D printing has sparked a lot of interest in designing structures with spatially graded material properties. In this paper, we propose a new type of density graded structure that is particularly designed for 3D printing systems based on filament extrusion. In order to ensure high-quality fabrication results, extrusion-based 3D printing requires not only that the structures are self-supporting, but also that extrusion toolpaths are continuous and free of self-overlap. The structure proposed in this paper, called CrossFill, complies with these requirements. In particular, CrossFill is a self-supporting foam structure, for which each layer is fabricated by a single, continuous and overlap-free path of material extrusion. Our method for generating CrossFill is based on a space-filling surface that employs spatially varying subdivision levels. Dithering of the subdivision levels is performed to accurately reproduce a prescribed density distribution. We demonstrate the effectiveness of CrossFill on a number of experimental tests and applications.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Continuous Toolpath Planning in Additive Manufacturing

    cs.CG 2019-08 conditional novelty 5.0 of 10

    A new geometric pipeline uses an Euler transformation of a 2D mesh to generate continuous, crossover-free toolpaths for sparse infill in each 3D printed layer.

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