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Design, development and experimental assessment of a robotic end-effector for non-standard concrete applications

机译:用于非标准混凝土应用的机器人末端执行器的设计,开发和实验评估

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Despite the recent advances in, and the adoption of robotic technologies in the construction industry, the architectural processes which demand a high degree of geometric freedom still remain largely labour intensive and manual. This is due to the inherent difficulties in robotizing the current implementation of such processes coupled with the lack of alternate robotic technologies. A specific example, which is also the focus of this paper, is that of building a steel reinforced concrete structure, with varying curvature or cross-section. This process still remains rather manual and requires extensive support of customized form-work. In this paper, first we describe an alternate novel robotic fabrication process for building steel wire meshes which act as both reinforcement and formwork. The robotization of such a process is discussed with the use of a previously developed mobile robotic system. Based on the specifications derived from the process, design of a novel custom designed robotic end-effector, enabling this process, is detailed. Automation of the full robotic system comprising the mobile robotic system and the robotic end-effector is discussed from simulation to control. Through experimental evaluation of the robotic system, we demonstrate the ability to fully automate the construction of non-standard steel reinforced steel meshes of varying curvature and cell sizes.
机译:尽管最近在建筑工业中取得了进步,并且采用了机器人技术,但是要求高度几何自由度的建筑过程仍然在很大程度上是劳动密集型的和人工的。这是由于在对此类过程的当前实现进行机械化方面存在固有的困难,再加上缺少替代性机械手技术。一个具体的示例(也是本文的重点)是构建具有变化的曲率或横截面的钢筋混凝土结构的示例。这个过程仍然相当手工,需要定制模板的广泛支持。在本文中,首先,我们描述了一种替代的新型机器人制造工艺,该工艺用于构建既可加固又可充当模板的钢丝网。通过使用先前开发的移动机器人系统来讨论这种过程的机器人化。根据从过程中得出的规范,详细介绍了实现该过程的新型定制机器人末端执行器的设计。从仿真到控制,讨论了包括移动机器人系统和机器人末端执行器在内的整个机器人系统的自动化。通过对机器人系统的实验评估,我们证明了能够完全自动化构建具有不同曲率和单元尺寸的非标准钢筋网的能力。

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