DefeXtiles: 3D Printing Quasi-Woven Fabric via Under-Extrusion

DefeXtiles: 3D Printing Quasi-Woven Fabric via Under-Extrusion
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DOI:
10.1145/3379337.3415876
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发表时间:
2020-10
期刊:
Proceedings of the 33rd Annual ACM Symposium on User Interface Software and Technology
影响因子:
--
通讯作者:
Jack Forman;Mustafa Doga Dogan;Hamilton Forsythe;H. Ishii
Jack Forman;Mustafa Doga Dogan;Hamilton Forsythe;H. Ishii
中科院分区:
其他
文献类型:
--
作者:
Jack Forman;Mustafa Doga Dogan;Hamilton Forsythe;H. Ishii

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我们提出了一种快速和低成本技术,可在未修饰的融合沉积建模(FDM)打印机上生产类似薄纱的织物。细丝的排序不足是造成印刷失败的常见原因,导致对象具有周期性间隙缺陷。在本文中,我们证明可以对这些缺陷进行精心控制以快速打印更薄的纺织品,比以前的方法允许的更灵活。我们的方法允许从千分尺结构到decameter形式的分层控制,并且与所有常见的3D打印材料兼容。在本文中,我们介绍了定义的机理,通过一组具有详细工作流程的原始图来建立设计空间,并表征了用多种材料和参数打印的截断的机械性能。最后,我们通过各种应用程序,例如时装设计原型制作,交互式对象,美学模式和单打印机执行器来证明我们方法的交互作用和新用例。
We present DefeXtiles, a rapid and low-cost technique to produce tulle-like fabrics on unmodified fused deposition modeling (FDM) printers. The under-extrusion of filament is a common cause of print failure, resulting in objects with periodic gap defects. In this paper, we demonstrate that these defects can be finely controlled to quickly print thinner, more flexible textiles than previous approaches allow. Our approach allows hierarchical control from micrometer structure to decameter form and is compatible with all common 3D printing materials. In this paper, we introduce the mechanism of DefeXtiles, establish the design space through a set of primitives with detailed workflows, and characterize the mechanical properties of DefeXtiles printed with multiple materials and parameters. Finally, we demonstrate the interactive features and new use cases of our approach through a variety of applications, such as fashion design prototyping, interactive objects, aesthetic patterning, and single-print actuators.