Computation for Automated Spatial Lattice Design-to-Fabrication with Low Cost Linear Elements and 3 D Printed Nodes

Computation for Automated Spatial Lattice Design-to-Fabrication with Low Cost Linear Elements and 3 D Printed Nodes
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使用低成本线性元件和 3D 打印节点进行自动化空间晶格设计到制造的计算

DOI:
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发表时间:
2017
期刊:
影响因子:
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通讯作者:
L. Sass
L. Sass
中科院分区:
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文献类型:
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作者:
S. Dritsas;Lujie Chen;L. Sass

文献摘要

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该过程使用户能够设计,制造和组装由线性库存材料组成的空间网格,如圆形截面木材,铝或丙烯酸销钉和复杂的3D打印接头。开发该应用程序的动机是由低成本3D打印机的令人难以置信的可用性所告知的,这些打印机使任何人都能够生产小规模的工件;部署快速原型以实现比机器有效工作范围更大规模的工件是增材制造的挑战;以及设计计算世界的趋势,即高度技术性的专业软件转向一般公共应用。
The presented process enables users to design, fabricate and assemble spatial lattices comprised of linear stock materials such as round section timber, aluminum or acrylic dowels and complex 3D printed joints. The motivation for the development of this application is informed by the incredible availability of low cost 3D printers which enable anyone to produce small scale artifacts; deploying rapid prototyping to achieve larger scale artifacts than the machine’s effective work envelope is a challenge for additive manufacturing; and the trend in the design computing world away highly technical specialized software towards general public applications.