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The Viability and Simplicity of 3D-Printed Construction: A Military Case Study

机译:3D打印构造的可行性和简单性:军事案例研究

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In November 2019, U.S. Marines, Air Force, and Army Corps of Engineers personnel demonstrated the viability and simplicity of three-dimensionally (3D)-printed construction in a controlled environment at the U.S. Army Engineer Research and Development Center—Construction Engineering Research Laboratory in Champaign, Illinois. The tri-service exercise spanned three days and culminated in the construction of three 1 m × 1 m × 1 m (3 ft × 3 ft × 3 ft) concrete dragon’s teeth (square pyramid military fortifications used to defend against tanks and armored vehicles) and several custom-designed objects. The structural components were printed using a custom-built, gantry-style printer called ACES Lite 2 and a commercially available, proprietary mortar mix. This paper examines the viability of using 3D-printed construction in remote, isolated, and expeditionary environments by considering the benefits and challenges associated with the printing materials, structural design, process efficiency, labor demands, logistical considerations, environmental impact, and project cost. Based on the results of this exercise, 3D-printed construction was found to be faster, safer, less labor-intensive, and more structurally efficient than conventional construction methods: the dragon’s teeth were printed in an average of 57 min each and required only two laborers. However, the use of commercially procured, pre-mixed materials introduced additional cost, logistical burden, and adverse environmental impact as compared to traditional, on-site concrete mixing and production. Finally, this paper suggests future applications and areas of further research for 3D-printed construction.
机译:2019年11月,美国海军陆战队,空军和陆军工程兵在美国陆军工程师研究与发展中心(建筑工程研究实验室)演示了在受控环境中进行三维(3D)打印的施工的可行性和简便性。伊利诺伊州尚佩恩。这项三阶段演习历时三天,最终建造了三颗1 m×1 m×1 m(3 ft×3 ft×3 ft)混凝土龙牙(用于防御坦克和装甲车的方金字塔军事工事)以及几个自定义设计的对象。结构组件使用定制的龙门式打印机ACES Lite 2和可商购的专有砂浆混合物进行打印。本文通过考虑与印刷材料,结构设计,过程效率,人工需求,后勤考虑,环境影响和项目成本相关的收益和挑战,研究了在偏远,孤立和远征环境中使用3D打印建筑的可行性。根据此练习的结果,发现3D打印的结构比传统的施工方法更快,更安全,劳动强度更低,结构更有效:龙牙的平均打印时间为57分钟,只需要两个劳工。然而,与传统的现场混凝土混合和生产相比,使用商业采购的预混合材料会带来额外的成本,后勤负担以及对环境的不利影响。最后,本文提出了3D打印构造的未来应用和进一步研究的领域。

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