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Construction method for cross-shaped steel rib of stiff column
The invention provides a construction method for a cross-shaped steel rib of a stiff column. The construction method comprises the steps that the stiff steel rib column is deeply designed, specifically, the cross-shaped steel rib column is deeply designed according to the design requirements, the structure construction drawing and the actual site conditions; a steel component is manufactured, specifically, segments are determined, and industrialized machining and production are conducted in a factory; and the component is mounted, specifically, hoisting and welding are conducted on a construction site. According to the construction method, the structure construction precision is high, specifically, the detailed construction drawing and the detailed component drawing are made through deep design, industrialized machining is conducted, the manufacturing error is controlled within 5mm, the site construction progress is controlled within 5mm, and the construction precision is high. The construction method is reliable in engineering quality, specifically, manufacturing and welding of the cross-shaped column, beam main rib through holes, column hoop through holes, stiffening ribs and the like are all completed in the factory, and thus the engineering quality can be effectively guaranteed. Site construction of the construction method is easy and convenient, specifically, the cross-shaped steel rib column is hoisted and mounted on the construction site through the finished component machined in the factory, the operation time can be saved, and the number of site operation personnel is greatly decreased.
本发明提供了一种劲性柱十字型钢骨施工方法,包括劲性钢骨柱深化设计:根据设计要求、结构施工图及现场实际条件,对十字型钢骨柱进行深化设计;钢构件的制作:确定分节分段,在工厂进行工厂化加工生产;构件的安装:在施工现场进行吊装、焊接。本发明的结构施工精度高:经过深化设计做出施工详图和构件详图,工厂化的加工,制作误差控制5毫米内,现场施工进度控制在5毫米内,施工精度高。本发明的工程质量可靠:因为十字柱的制作焊接、梁主筋贯通孔、柱箍的贯通孔、加劲肋等均在工厂内完成,工程质量能得到有效保障。本发明的现场施工简便:工厂加工成品构件在施工现场进行十字钢骨柱的吊装安装,可节省作业时间并大大减少现场作业人员数量。
Construction method for cross-shaped steel rib of stiff column
The invention provides a construction method for a cross-shaped steel rib of a stiff column. The construction method comprises the steps that the stiff steel rib column is deeply designed, specifically, the cross-shaped steel rib column is deeply designed according to the design requirements, the structure construction drawing and the actual site conditions; a steel component is manufactured, specifically, segments are determined, and industrialized machining and production are conducted in a factory; and the component is mounted, specifically, hoisting and welding are conducted on a construction site. According to the construction method, the structure construction precision is high, specifically, the detailed construction drawing and the detailed component drawing are made through deep design, industrialized machining is conducted, the manufacturing error is controlled within 5mm, the site construction progress is controlled within 5mm, and the construction precision is high. The construction method is reliable in engineering quality, specifically, manufacturing and welding of the cross-shaped column, beam main rib through holes, column hoop through holes, stiffening ribs and the like are all completed in the factory, and thus the engineering quality can be effectively guaranteed. Site construction of the construction method is easy and convenient, specifically, the cross-shaped steel rib column is hoisted and mounted on the construction site through the finished component machined in the factory, the operation time can be saved, and the number of site operation personnel is greatly decreased.
本发明提供了一种劲性柱十字型钢骨施工方法,包括劲性钢骨柱深化设计:根据设计要求、结构施工图及现场实际条件,对十字型钢骨柱进行深化设计;钢构件的制作:确定分节分段,在工厂进行工厂化加工生产;构件的安装:在施工现场进行吊装、焊接。本发明的结构施工精度高:经过深化设计做出施工详图和构件详图,工厂化的加工,制作误差控制5毫米内,现场施工进度控制在5毫米内,施工精度高。本发明的工程质量可靠:因为十字柱的制作焊接、梁主筋贯通孔、柱箍的贯通孔、加劲肋等均在工厂内完成,工程质量能得到有效保障。本发明的现场施工简便:工厂加工成品构件在施工现场进行十字钢骨柱的吊装安装,可节省作业时间并大大减少现场作业人员数量。
Construction method for cross-shaped steel rib of stiff column
一种劲性柱十字型钢骨施工方法
LIU DUN (Autor:in) / LIANG CHAO (Autor:in) / CHEN XINGQIANG (Autor:in) / ZHANG ZHUANZHUAN (Autor:in) / GUO XINPING (Autor:in) / LIU JUN (Autor:in) / CHEN LEI (Autor:in) / TIAN JUN (Autor:in) / XU YAN (Autor:in)
20.04.2021
Patent
Elektronische Ressource
Chinesisch
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