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Construction method for ultra-high performance concrete steel-concrete combined section
The invention relates to the technical field of bridge engineering, and discloses an ultra-high performance concrete steel-concrete combined section construction method which comprises the following steps: S1, steel bar processing and mounting: cutting, bending and connecting steel bars according to design requirements; the machined steel bars are installed according to the designed positions; performing real-time detection and correction on reinforcement positioning by using an algorithm based on image recognition; s2, mold inspection and installation: before the mold is installed, whether the mold is damaged or not is inspected so as to repair the mold; fixing the mold outside the reinforcement cage; a sensor-based data analysis algorithm is used to monitor the stability and position of the mold in real time. By using an accurate image recognition algorithm and automatic steel bar positioning and mounting, manual errors are reduced, the mounting efficiency is improved, in the mold checking and mounting process, based on a data analysis algorithm of a sensor, the stability and position of the mold are monitored in real time, it is ensured that mold mounting is accurate and error-free, and the adjustment time is shortened.
本发明涉及桥梁工程技术领域,公开一种超高性能混凝土钢混结合段施工方法,包括如下步骤:S1、钢筋加工与安装:按照设计要求对钢筋进行切割、弯曲和连接;将加工好的钢筋按照设计位置进行安装;使用基于图像识别的算法对钢筋定位进行实时检测和校正;S2、模具检查与安装:在安装模具前,检查模具是否有损坏,以进行修补;将模具固定在钢筋笼外部;使用基于传感器的数据分析算法,实时监测模具的稳定性和位置。通过使用精确的图像识别算法,自动化钢筋定位与安装,减少人工误差,提高安装效率,且在模具检查与安装过程中,基于传感器的数据分析算法,实时监测模具的稳定性和位置,确保模具安装精确无误,减少调整的时间。
Construction method for ultra-high performance concrete steel-concrete combined section
The invention relates to the technical field of bridge engineering, and discloses an ultra-high performance concrete steel-concrete combined section construction method which comprises the following steps: S1, steel bar processing and mounting: cutting, bending and connecting steel bars according to design requirements; the machined steel bars are installed according to the designed positions; performing real-time detection and correction on reinforcement positioning by using an algorithm based on image recognition; s2, mold inspection and installation: before the mold is installed, whether the mold is damaged or not is inspected so as to repair the mold; fixing the mold outside the reinforcement cage; a sensor-based data analysis algorithm is used to monitor the stability and position of the mold in real time. By using an accurate image recognition algorithm and automatic steel bar positioning and mounting, manual errors are reduced, the mounting efficiency is improved, in the mold checking and mounting process, based on a data analysis algorithm of a sensor, the stability and position of the mold are monitored in real time, it is ensured that mold mounting is accurate and error-free, and the adjustment time is shortened.
本发明涉及桥梁工程技术领域,公开一种超高性能混凝土钢混结合段施工方法,包括如下步骤:S1、钢筋加工与安装:按照设计要求对钢筋进行切割、弯曲和连接;将加工好的钢筋按照设计位置进行安装;使用基于图像识别的算法对钢筋定位进行实时检测和校正;S2、模具检查与安装:在安装模具前,检查模具是否有损坏,以进行修补;将模具固定在钢筋笼外部;使用基于传感器的数据分析算法,实时监测模具的稳定性和位置。通过使用精确的图像识别算法,自动化钢筋定位与安装,减少人工误差,提高安装效率,且在模具检查与安装过程中,基于传感器的数据分析算法,实时监测模具的稳定性和位置,确保模具安装精确无误,减少调整的时间。
Construction method for ultra-high performance concrete steel-concrete combined section
一种超高性能混凝土钢混结合段施工方法
ZHANG PAN (author) / WU QIGANG (author) / LUN YANSHENG (author) / TAN NINGBO (author) / LUO GANG (author) / LIU CHANGMAN (author) / YIN CHANGKUN (author) / JIANG JIAXUE (author) / ZHANG XIAOLEI (author) / KONG LINGCHENG (author)
2024-11-08
Patent
Electronic Resource
Chinese
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