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Large-scale 3D printing with cable-driven parallel robots

机译:使用电缆驱动的并行机器人进行大规模3D打印

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摘要

Gantry robots and anthropomorphic arms of various sizes have already been studied and, while they are in use in some parts of the world for automated construction, a new kind of wide workspace machinery, cable-driven parallel robots (CDPR), has emerged. These robots are capable of automated movement in a very wide workspace, using cables reeled in and out by winches as actuation members, the other elements being easily stacked for easy relocation and reconfiguration, which is critical for on-site construction. The motivation of this paper is to showcase the potential of a CDPR operating solely on motor position sensors and showing limited collisions from the cables for large-scale applications in the building industry relevant for additive manufacturing, without risk of collisions between the cables and the building. The combination of the Cogiro CDPR (Tecnalia, LIRMM-CNRS 2010) with the extruder and material of the Pylos project (IAAC 2013) opens the opportunity to a 3D printing machine with a workspace of 13.6 × 9.4 × 3.3 m. The design patterns for printing on such a large scale are disclosed, as well as the modifications that were necessary for both the Cogiro robot and Pylos extruder and material. Two prints, with different patterns, have been achieved with the Pylos extruder mounted on Cogiro: the first spanning 3.5 m in length, the second, reaching a height of 0.86 m. Based on this initial experiment, plans for building larger parts and buildings are discussed, as well as other possible applications for CDPRs in construction, such as the manipulation of assembly processes (windows, lintels, beams, floor elements, curtain wall modules, etc.) or brick laying.
机译:已经研究了各种尺寸的龙门机器人和拟人化手臂,并且在世界上一些地区将其用于自动化构造时,出现了一种新型的宽工作空间机械,即电缆驱动的并行机器人(CDPR)。这些机器人能够在非常宽的工作空间中进行自动移动,使用绞盘卷入和卷出的电缆作为驱动构件,其他元件可以轻松堆叠以方便重新放置和重新配置,这对于现场施工至关重要。本文的目的是展示CDPR仅在电机位置传感器上运行的潜力,并显示电缆的有限碰撞,以用于与增材制造相关的建筑行业的大规模应用,而不会出现电缆与建筑物碰撞的风险。 Cogiro CDPR(Tecnalia,LIRMM-CNRS 2010)与挤出机和Pylos项目的材料(IAAC 2013)的结合为工作空间为13.6×9.4×3.3 m的3D打印机提供了机会。公开了用于如此大规模印刷的设计图案,以及对于Cogiro机器人和Pylos挤出机和材料都必需的修改。安装在Cogiro上的Pylos挤出机可实现两种不同图案的印刷:第一幅长3.5 m,第二幅长0.86 m。在此初始实验的基础上,讨论了建造较大零件和建筑物的计划,以及CDPR在建筑中的其他可能应用,例如装配过程的操作(窗户,门lin,横梁,地板构件,幕墙模块等)。 )或砌砖。

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