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Building steel structure virtual assembly method and device based on BIM platform
The invention provides a building steel structure virtual assembly method and device based on a BIM (Building Information Modeling) platform, and relates to the technical field of steel building material virtual testing. In addition, calculation of thermal expansion coefficients and dynamic comparative analysis of theoretical geometric parameters and assembly parameters are introduced, by means of the method, geometric tolerance evaluation indexes and assembly tolerance evaluation indexes can be generated in real time, and error threshold values are dynamically adjusted according to the indexes, so that the error tolerance evaluation accuracy is improved. The dynamic adjustment strategy can effectively reduce the uncertainty and complexity in the field assembly process, so that the requirement for secondary machining is reduced, the engineering efficiency and quality are optimized, the implementation of the ZE model not only improves the assembly precision, but also reduces material waste and machining time, and obvious economic benefits and production efficiency are displayed.
本发明提供一种基于BIM平台的建筑钢结构虚拟装配方法及装置,涉及钢建材虚拟测试技术领域,本发明通过对钢构件各安装部位进行详细的标注和温差数据的采集,还引入了热膨胀系数的计算以及与理论几何参数和装配参数的动态对比分析,通过此方法,可以实时生成几何容差评价指数和装配容差评价指数,并依据这些指数对误差阈值进行动态调整,这种动态调整策略能够有效减少现场装配过程中的不确定性和复杂性,从而减少二次加工的需求,优化工程效率和质量,ZE模型的实施不仅提高了装配精度,还减少了材料浪费和加工时间,显示了明显的经济效益和生产效率。
Building steel structure virtual assembly method and device based on BIM platform
The invention provides a building steel structure virtual assembly method and device based on a BIM (Building Information Modeling) platform, and relates to the technical field of steel building material virtual testing. In addition, calculation of thermal expansion coefficients and dynamic comparative analysis of theoretical geometric parameters and assembly parameters are introduced, by means of the method, geometric tolerance evaluation indexes and assembly tolerance evaluation indexes can be generated in real time, and error threshold values are dynamically adjusted according to the indexes, so that the error tolerance evaluation accuracy is improved. The dynamic adjustment strategy can effectively reduce the uncertainty and complexity in the field assembly process, so that the requirement for secondary machining is reduced, the engineering efficiency and quality are optimized, the implementation of the ZE model not only improves the assembly precision, but also reduces material waste and machining time, and obvious economic benefits and production efficiency are displayed.
本发明提供一种基于BIM平台的建筑钢结构虚拟装配方法及装置,涉及钢建材虚拟测试技术领域,本发明通过对钢构件各安装部位进行详细的标注和温差数据的采集,还引入了热膨胀系数的计算以及与理论几何参数和装配参数的动态对比分析,通过此方法,可以实时生成几何容差评价指数和装配容差评价指数,并依据这些指数对误差阈值进行动态调整,这种动态调整策略能够有效减少现场装配过程中的不确定性和复杂性,从而减少二次加工的需求,优化工程效率和质量,ZE模型的实施不仅提高了装配精度,还减少了材料浪费和加工时间,显示了明显的经济效益和生产效率。
Building steel structure virtual assembly method and device based on BIM platform
一种基于BIM平台的建筑钢结构虚拟装配方法及装置
LIU HONGBO (Autor:in) / GAO SONGYAN (Autor:in) / QIN XIAOYU (Autor:in) / DU PENG (Autor:in) / ZHANG HAIJIANG (Autor:in)
16.07.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
G06F
ELECTRIC DIGITAL DATA PROCESSING
,
Elektrische digitale Datenverarbeitung
/
E04G
SCAFFOLDING
,
Baugerüste
/
G06Q
Datenverarbeitungssysteme oder -verfahren, besonders angepasst an verwaltungstechnische, geschäftliche, finanzielle oder betriebswirtschaftliche Zwecke, sowie an geschäftsbezogene Überwachungs- oder Voraussagezwecke
,
DATA PROCESSING SYSTEMS OR METHODS, SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL, SUPERVISORY OR FORECASTING PURPOSES
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