课题基金 / 基金详情

SPP 2187: Adaptive modularized constructions made in a flux: precise and rapid building

SPP 2187: Adaptive modularized constructions made in a flux: precise and rapid building
SPP 2187:不断变化的自适应模块化结构:精确而快速的构建
批准号:
402702316
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
德国
项目类别:
Priority Programmes
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:

项目摘要

项目成果

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中文摘要
翻译
该优先计划的目的是开发在工业流程生产中用高性能混凝土制造部分自适应模块的基本科学方法。模块应具有系列性,并能快速施工。应保留组合结构的视觉个性,以便寻求可伸缩、自适应和在使用寿命期间可转换的模块和合适的生产概念。来自混凝土结构、制造技术和工程信息学领域的专家将为三个主要研究领域做出贡献:侧重于模块化的设计和施工,可扩展模块的系统和生产概念,以及相关过程的通用数字模型。第一个资助期(FP1)的目标是个别研究专题的有条不紊的进展和建立第一次互动。在FP2中,重点从单个模块扩大到整体承载结构及其数字表示。具体地说,这包括将可转换模块概念整合到数字模型中,以涵盖建造状态以及用于质量控制的新测量技术,以及与网络物理系统相关的制造概念。协调项目有助于优先方案取得一致的全面成功,并作出三项关键贡献:结构协调、内容协调和所有研究活动的联系,以及将其概括为共同的普遍战略。结构协调由协调员和项目委员会管理。措施包括不同级别的活动、各种宣传和进一步培训措施、启动支持、国际化措施、集团联合代表、维持公共关系以及协调交流平台上的定期交流。在内容方面,要求将所有分项目与整体数字表示相联系。已建立的交换平台将在接口和数据结构上陆续进行扩展。将启动项目之间的互动链,并将开发两个新建筑方法的示范,一个是真正的结构建筑,一个是作为智能工厂的虚拟建筑。方案中所有发展的概括和巩固都是有条不紊地基于中央项目的基本原则。在第一章中,重点放在梁和墙结构在与工艺有关的材料和几何不确定因素的综合作用下的方法上。在FP2中,将开发模块结构的连接和中间状态的模型、可变化性方法以及对智能工厂的数字表示的控制。中央项目以连贯的方式协调整个网络,并用于避免不必要的差距。
英文摘要
The aim of the priority program is to develop the fundamental scientific methods for manufacturing partially adaptive modules from high-performance concrete in industrial flow production. The modules should have series character and enable rapid construction. Visual individuality of the composite structure shall be preserved, so that scalable, adaptive and during the service life transformable modules and suitable production concepts are sought. Experts from the fields of concrete structures, manufacturing technology and engineering informatics are addressed to contribute to the three major domains of research: Design and construction with focus on modularization, systems and concepts of production for scalable modules, as well as universal digital models for the associated processes. Objectives of the first funding period (FP1) were the methodical progress of the individual research topics and the establishment of first interactions. In FP2, the focus is widened from the individual modules to the holistic load-bearing structure and its digital representation. Specifically, this includes the integration of convertible module concepts to cover construction states as well as new measurement techniques for quality control into the digital models and the associated manufacturing concepts with cyber-physical systems. The coordination project serves the coherent overall success of the priority program and makes three key contributions: structural coordination, coordination of content and linking of all research activities, as well as generalization into joint universal strategies. Structural coordination is managed by the coordinator and a program committee. Measures include events on different levels, various promotional and further training measures, start-up support, internationalization measures, a joint representation of the group, maintenance of public relations and coordination of regular exchange on communication platforms. In terms of content, the linking of all subprojects to the overall digital representation is called for. The established exchange platform will be successively extended in its interfaces and data structures. Interaction chains across the projects will be initiated and two demonstrators of the new construction method will be developed, a real structural one and a virtual one as a smart factory. Generalization and consolidation of all developments in the program are methodically based on fundamental principles from the central project. In FP1, the focus was on methods for beam and wall structures under integration of process-related uncertainties in material and geometry. In FP2, models for joints and intermediate states of construction of modules, methods of changeability and the control of the digital representation to a smart factory are to be developed. The central project harmonizes the entire network in a coherent manner and serves to avoid unwanted gaps.
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