Examination of Advanced Fastening Systems for the use of Robots in the Construction Industry

P. Spyridis, A. Spengler, Dirk Schlüter, T. Bruckmann, A. Malkwitz
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引用次数: 1

Abstract

Since robotics become more widespread in the construction industry, more construction phases and work steps must be covered with one robot system. Current robot systems are used almost exclusively in precast construction. At the construction site, so far only prototypes are in use, and only individual parts of the building shell construction and assembly can be covered. This paper examines to what extent fastenings are necessary to increase the operating range of robots and which boundary conditions exist or need to be addressed. Automated construction, and more precisely installation of fastenings, has so far been partially implemented, which has shown increased productivity as well as installation quality, thus load-bearing safety. This knowledge must now be extended to robots. The present work is based on an overview of current research and development and on the current research on a cable robot for brickwork construction at the university Duisburg-Essen. It further demonstrates that fastenings pose an important further application, especially in order to explore the extended phases towards the brickwork or contour crafting. It can be assumed that robots will become increasingly important in the construction industry. Reasons include high quality, safety, speed and economic aspects . The Authors. Published by Budapest University of Technology and Economics & Diamond Congress Ltd. Peer-review under responsibility of the scientific committee of the Creative Construction Conference 2019.
在建筑工业中使用机器人的先进紧固系统的检验
随着机器人技术在建筑行业中的应用越来越广泛,一个机器人系统必须涵盖更多的施工阶段和工作步骤。目前的机器人系统几乎只用于预制结构。在施工现场,到目前为止只使用了原型,并且只能覆盖建筑外壳结构和组装的单个部分。本文研究了在多大程度上需要紧固件来增加机器人的操作范围,以及存在或需要解决的边界条件。到目前为止,已经部分实现了自动化施工和更精确的紧固件安装,这表明提高了生产率和安装质量,从而提高了承重安全性。这种知识现在必须扩展到机器人上。目前的工作是基于对当前研究和发展的概述,以及目前在杜伊斯堡-埃森大学对砖砌施工电缆机器人的研究。它进一步表明,紧固件提出了一个重要的进一步应用,特别是为了探索延伸阶段的砖砌或轮廓工艺。可以设想,机器人在建筑行业将变得越来越重要。原因包括高质量、安全、速度和经济方面。作者。由布达佩斯科技经济大学和钻石大会有限公司出版。由2019创意建设大会科学委员会负责同行评审。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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