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Adjustable bearing platform steel formwork driven and controlled by magnetic force and construction method of adjustable bearing platform steel formwork
The invention discloses a magnetic drive control adjustable bearing platform steel formwork and a construction method thereof.The magnetic drive control adjustable bearing platform steel formwork comprises a magnetic drive control device, a combined side steel plate and a long-strip side steel plate, the magnetic drive control device comprises an electromagnet, the combined side steel plate and the long-strip side steel plate are combined to form the bearing platform steel formwork, and the electromagnet is installed on the bearing platform steel formwork; the electromagnet serves as a main control center, the combined side steel plates and the long-strip-shaped side steel plates integrally form a closed magnetic loop by controlling the current of the electromagnet, then the connecting force between the steel formworks is controlled, and the formworks are effectively connected. Electromagnetic force is adopted as connecting force, connecting operation is simple, a power source is turned off in the form stripping period, the electromagnetic connecting force is eliminated, and the purpose of quick form stripping of the steel form is achieved; the overall size of the bearing platform is adjusted by combining and connecting the combined steel plates and the strip-shaped steel plates, so that the aim of adapting to multiple sizes of the bearing platform is fulfilled; the method is simple, low in cost and good in stability, and can make up for the defects of traditional steel dies.
本发明公开了一种磁力驱动控制可调节承台钢模板及其施工方法,包括磁力驱动控制装置、组合侧钢板和长条侧钢板,磁力驱动控制装置包括电磁铁,组合侧钢板和长条侧钢板组合构成承台钢模板,电磁铁安装在承台钢模板上,以电磁铁为主要控制中枢,通过控制电磁铁电流大小,使组合侧钢板和长条侧钢板整体形成闭合磁回路,进而控制钢模板间的连接力,使模板进行有效连接。本发明采用电磁力作为连接力,连接操作简单,在拆模期间关闭电源,以消除电磁连接力,并达到钢模快速拆模的目的;采用组合钢板和长条钢板组合连接的形式,进行承台整体尺寸调节,以此达到承台多尺寸适应的目的;方法简便、成本低和稳定性好,可弥补传统钢模具的不足。
Adjustable bearing platform steel formwork driven and controlled by magnetic force and construction method of adjustable bearing platform steel formwork
The invention discloses a magnetic drive control adjustable bearing platform steel formwork and a construction method thereof.The magnetic drive control adjustable bearing platform steel formwork comprises a magnetic drive control device, a combined side steel plate and a long-strip side steel plate, the magnetic drive control device comprises an electromagnet, the combined side steel plate and the long-strip side steel plate are combined to form the bearing platform steel formwork, and the electromagnet is installed on the bearing platform steel formwork; the electromagnet serves as a main control center, the combined side steel plates and the long-strip-shaped side steel plates integrally form a closed magnetic loop by controlling the current of the electromagnet, then the connecting force between the steel formworks is controlled, and the formworks are effectively connected. Electromagnetic force is adopted as connecting force, connecting operation is simple, a power source is turned off in the form stripping period, the electromagnetic connecting force is eliminated, and the purpose of quick form stripping of the steel form is achieved; the overall size of the bearing platform is adjusted by combining and connecting the combined steel plates and the strip-shaped steel plates, so that the aim of adapting to multiple sizes of the bearing platform is fulfilled; the method is simple, low in cost and good in stability, and can make up for the defects of traditional steel dies.
本发明公开了一种磁力驱动控制可调节承台钢模板及其施工方法,包括磁力驱动控制装置、组合侧钢板和长条侧钢板,磁力驱动控制装置包括电磁铁,组合侧钢板和长条侧钢板组合构成承台钢模板,电磁铁安装在承台钢模板上,以电磁铁为主要控制中枢,通过控制电磁铁电流大小,使组合侧钢板和长条侧钢板整体形成闭合磁回路,进而控制钢模板间的连接力,使模板进行有效连接。本发明采用电磁力作为连接力,连接操作简单,在拆模期间关闭电源,以消除电磁连接力,并达到钢模快速拆模的目的;采用组合钢板和长条钢板组合连接的形式,进行承台整体尺寸调节,以此达到承台多尺寸适应的目的;方法简便、成本低和稳定性好,可弥补传统钢模具的不足。
Adjustable bearing platform steel formwork driven and controlled by magnetic force and construction method of adjustable bearing platform steel formwork
一种磁力驱动控制可调节承台钢模板及其施工方法
HUANG JIAHUI (Autor:in) / ZHU XIANG (Autor:in) / HE ZONGCHENG (Autor:in) / ZHANG RUISONG (Autor:in) / HUANG LIANG (Autor:in)
30.08.2022
Patent
Elektronische Ressource
Chinesisch
IPC:
E02D
FOUNDATIONS
,
Gründungen
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