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3D Printing Variable Stiffness Foams Using Viscous Thread Instability

机译:使用粘性螺纹不稳定性的3D打印可变刚度泡沫

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摘要

Additive manufacturing of cellular structures has numerous applications ranging from fabrication of biological scaffolds and medical implants, to mechanical weight reduction and control over mechanical properties. Various additive manufacturing processes have been used to produce open regular cellular structures limited only by the resolution of the printer. These efforts have focused on printing explicitly designed cells or explicitly planning offsets between strands. Here we describe a technique for producing cellular structures implicitly by inducing viscous thread instability when extruding material. This process allows us to produce complex cellular structures at a scale that is finer than the native resolution of the printer. We demonstrate tunable effective elastic modulus and density that span two orders of magnitude. Fine grained cellular structures allow for fabrication of foams for use in a wide range of fields ranging from bioengineering, to robotics to food printing.
机译:细胞结构的增材制造具有广泛的应用范围,从生物支架和医疗植入物的制造到机械重量的减轻和机械性能的控制。各种增材制造工艺已用于生产仅受打印机分辨率限制的开放规则的多孔结构。这些工作集中在打印明确设计的单元格或明确计划股之间的偏移量。在这里,我们描述了一种通过在挤压材料时引起粘性螺纹不稳定性来隐式地生产蜂窝结构的技术。此过程使我们能够以比打印机的原始分辨率更精细的规模生产复杂的蜂窝结构。我们展示了跨越两个数量级的可调有效弹性模量和密度。细颗粒的多孔结构允许制造泡沫,用于从生物工程,机器人技术到食品印刷的广泛领域。

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  • 作者

    Lipson Hod; Lipton Jeffrey I;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en_US
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