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Development of a modular and integrated product-manufacturing-installation system kit for the automation of the refurbishment process in the research project BERTIM

机译:开发模块化和集成的产品制造 - 安装系统套件,用于研究项目Bertim的翻新过程的自动化

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The manufacture-installation of prefabricated modules for the refurbishment market needs to be lifted to a more integrated, systemized and automated level, in order to transform the existing buildings stock towards near zero energy consumption at reasonable cost. In building renovation, prefabricated modules have to be industrially customized to each building, and therefore, standard prefabrication and refurbishing approaches have to be re-conceived. In that sense, the automotive industry is a good example of combining modular products and manufacturing processes. Within the research EU-funded research project BERTIM, research institutes and companies are developing an interdisciplinary, cross-country approach for this challenge. In this research project, the goal of a dedicated work package is to ameliorate the existing holistic renovation process, by a combination an integration of robotic, automation and augmented reality technologies. Basically, the final objective is to reduce time and cost of the current process of the manufacturing and installation of 2D and 3D modules significantly (by 30% or more). For the development of this research, the Axiomatic Design method has been used, which is a matrix based method. Here, the main requirements and design parameters are expressed mathematically. The objective of applying this method is to define a scientific approach to the re-conception of the prefab modules and the manufacturing and installation processes, and therefore find an optimal solution for every decomposed requirement.
机译:用于翻新市场的预制模块的制造安装需要升级到更集成,系统化和自动化的水平,以便以合理的成本将现有建筑物的库存转变为近零能耗。在建筑装修方面,预制模块必须在工业上定制到每个建筑物,因此必须重新构思标准预制和翻新方法。从这种意义上说,汽车行业是结合模块化产品和制造过程的一个很好的例子。在研究欧盟资助的研究项目Bertim,研究机构和公司正在开发跨学科,越野方法为这一挑战。在本研究项目中,专用工作包的目标是通过组合机器人,自动化和增强现实技术的结合来改善现有的整体改造过程。基本上,最终目标是显着降低制造和安装2D和3D模块的当前过程的时间和成本(通过30%或更多)。为了开发本研究,已经使用了公理设计方法,这是一种基于矩阵的方法。这里,主要要求和设计参数在数上表达。应用该方法的目的是定义预制模块的重新构建和制造和安装过程的科学方法,因此找到了每个分解要求的最佳解决方案。

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