Fabricating Topologically Optimized Tree-Like Pavilions Using Large-Scale Robotic 3D Printing Techniques

D. Bao, Xin Yan, Y. Xie
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引用次数: 4

Abstract

This research addresses innovations in building structural components through the generative design technique Bi-directional Evolutionary Structural Optimization (BESO) and the application of large-scale 3D robotic printing to produce efficient and elegant spatial structures. The innovative pavilion discussed in this paper demonstrates a design process and the ambitions of the research group through a full-scale model of large-span spatial structures. The focus of this work is the use of a modified BESO technique to optimize the structure, which features branches of various sizes and then applies 'skin' surfaces according to the direction of the main structure. The innovative production, construction, and assembling methodologies are to replace welded ultimately, forged, and cast components with large robotic 3D printed components and bolting methods. The advantages of the new design and construction process are less labor, fewer joints, shorter assembling time, lower cost & more efficient material usage and more complex & elegant large structural form.
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使用大型机器人3D打印技术制造拓扑优化的树状展馆
本研究通过生成设计技术双向进化结构优化(BESO)和大规模3D机器人打印的应用,解决了建筑结构构件的创新问题,以产生高效优雅的空间结构。本文讨论的创新展馆通过大跨度空间结构的全尺寸模型展示了研究小组的设计过程和雄心。这项工作的重点是使用改进的BESO技术来优化结构,该技术以各种大小的分支为特征,然后根据主结构的方向应用“蒙皮”表面。创新的生产、施工和组装方法是用大型机器人3D打印部件和螺栓连接方法最终取代焊接、锻造和铸造部件。新的设计和施工工艺具有劳动力少、接头少、装配时间短、成本低、材料使用效率高、大型结构形式更复杂优雅等优点。
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来源期刊
CiteScore
1.40
自引率
0.00%
发文量
17
期刊介绍: The Association publishes an international journal, the Journal of the IASS, four times yearly, in print (ISSN 1028-365X) and on-line (ISSN 1996-9015). The months of publication are March, June, September and December. Occasional extra electronic-only issues are included in the on-line version. From this page you can access one or more issues -- a sample issue if you are not logged into the members-only portion of the site, or the current issue and several back issues if you are logged in as a member. For any issue that you can view, you can download articles as .pdf files.
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