Space-filling and print path generation methods for large-area 3D concrete printing pavements

Shuyi Huang, Weiguo Xu, Hanyang Hu
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Abstract

3D concrete printing (3DCP) technology is a construction method that offers a unique combination of automation and customization. However, when the printing area goes large, generating the print path becomes a sophisticated work. That’s because the customized print path should not only be expandable but also printable, such rules are hard to follow as both the printing area and construction requirements increase. In this paper, the Shenzhen Baoan 3D Printing Park project serves as a case study to introduce space-filling and print path generation methods for three types of large-area concrete pavement. The space-filling methods utilize geometry-based rules to generate complex and expandable paving patterns, while the print path generation methods utilize construction-oriented rules to convert these patterns into print paths. The research provides easy-to-operate design and programming workflows to achieve a pavement printing area of 836 sqm, which significantly increases the construction scale of large-format additive manufacturing (LFAM) and shows the potential of 3D printing technology to reach non-standard results by using standard workflows.

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大面积3D混凝土打印路面的空间填充和打印路径生成方法
三维混凝土打印(3DCP)技术是一种集自动化和定制化于一体的建筑方法。然而,当打印区域变大时,生成打印路径就成了一项复杂的工作。这是因为定制的打印路径不仅要可扩展,还要可打印,随着打印面积和施工要求的增加,这种规则很难遵循。本文以深圳宝安三维打印公园项目为例,介绍了三种大面积混凝土路面的空间填充和打印路径生成方法。空间填充方法利用基于几何的规则生成复杂且可扩展的铺装图案,而打印路径生成方法则利用面向构造的规则将这些图案转换为打印路径。该研究提供了易于操作的设计和编程工作流程,实现了 836 平方米的路面打印面积,大大提高了大型增材制造(LFAM)的施工规模,并展示了三维打印技术通过使用标准工作流程实现非标准结果的潜力。
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