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首页> 外文期刊>Materials & design >Large-scale 3D printing of ultra-high performance concrete - a new processing route for architects and builders
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Large-scale 3D printing of ultra-high performance concrete - a new processing route for architects and builders

机译:超高性能混凝土的大规模3D打印-建筑师和建筑商的新加工路线

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摘要

In the present paper a new additive manufacturing processing route is introduced for ultra-high performance concrete. Interdisciplinary work involving materials science, computation, robotics, architecture and design resulted in the development of an innovative way of 3D printing cementitious materials. The 3D printing process involved is based on a FDM-like technique, in the sense that a material is deposited layer by layer through an extrusion printhead mounted on a 6-axis robotic arm. The mechanical properties of 3D printed materials are assessed. The proposed technology succeeds in solving many of the problems that can be found in the literature. Most notably, this process allows the production of 3D large-scale complex geometries, without the use of temporary supports, as opposed to 2.5D examples found in the literature for concrete 3D printing. Architectural cases of application are used as examples in order to demonstrate the potentialities of the technology. Two structural elements were produced and constitute some of the largest 3D printed concrete parts available until now. Multifunctionality was enabled for both structural elements by taking advantage of the complex geometry which can be achieved using our technology for large-scale additive manufacturing. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种用于超高性能混凝土的新型增材制造工艺路线。涉及材料科学,计算,机器人技术,建筑和设计的跨学科工作促成了3D打印胶凝材料创新方法的发展。涉及的3D打印过程基于类似FDM的技术,即材料通过安装在6轴机械臂上的挤出打印头逐层沉积。评估3D打印材料的机械性能。所提出的技术成功解决了许多文献中可以发现的问题。最值得注意的是,与文献3中针对混凝土3D打印的2.5D实例相反,此过程无需使用临时支撑就可以生产3D大型复杂几何体。以应用程序的体系结构案例为例,以演示该技术的潜力。产生了两个结构元素,构成了迄今为止最大的一些3D打印混凝土零件。通过利用我们的大规模增材制造技术可以实现的复杂几何形状,这两个结构元件都实现了多功能性。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Materials & design》 |2016年第6期|102-109|共8页
  • 作者单位

    XtreeE SAS, 157 Blvd MacDonald, F-75019 Paris, France|Ecole Natl Super Architecture Paris Malaquais, Digital Knowledge, 14 Rue Bonaparte, F-75006 Paris, France;

    XtreeE SAS, 157 Blvd MacDonald, F-75019 Paris, France|Ecole Natl Super Architecture Paris Malaquais, Digital Knowledge, 14 Rue Bonaparte, F-75006 Paris, France;

    XtreeE SAS, 157 Blvd MacDonald, F-75019 Paris, France|Ecole Natl Super Architecture Paris Malaquais, Digital Knowledge, 14 Rue Bonaparte, F-75006 Paris, France;

    XtreeE SAS, 157 Blvd MacDonald, F-75019 Paris, France|Ecole Natl Super Architecture Paris Malaquais, Digital Knowledge, 14 Rue Bonaparte, F-75006 Paris, France;

    XtreeE SAS, 157 Blvd MacDonald, F-75019 Paris, France|CNAM CNRS UMR 8006, Arts & Metiers ParisTech, PIMM, 151 Bd Hop, F-75013 Paris, France;

    XtreeE SAS, 157 Blvd MacDonald, F-75019 Paris, France|Ecole Natl Super Architecture Paris Malaquais, Digital Knowledge, 14 Rue Bonaparte, F-75006 Paris, France|EZCT Architecture & Design Res, 157 Blvd MacDonald, F-75019 Paris, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    3D Printing; Concrete; Cementitious materials; Large-scale additive manufacturing; Architecture design;

    机译:3D打印;混凝土;胶凝材料;大规模增材制造;建筑设计;

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