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Lever balance system for transverse movement amplitude passing of bridge girder erection machine and control method of lever balance system
The invention discloses a bridge girder erection machine, and aims to provide a lever balance system for transverse movement and amplitude crossing of the bridge girder erection machine, which is high in construction efficiency, short in construction period, low in cost and safe and reliable in amplitude crossing process, and a control method of the lever balance system for transverse movement and amplitude crossing of the bridge girder erection machine. The bridge erecting machine is easy to disassemble and assemble, convenient to transfer on a construction site, capable of transversely moving in place at a time, large in wind resistance, capable of ensuring safe operation, safe and reliable, capable of controlling the bridge erecting machine to transversely move in the range from 0 degree to 45 degrees through the function of the rotating disc of the bridge erecting machine, short in consumed time, low in needed cost, high in transverse moving efficiency and capable of reducing the construction cost compared with traditional bridge erecting machine transverse moving operation. The central control device and the infrared sensor are matched with each other to calculate the stress conditions of the two sides of the bridge erecting machine, so that the bridge erecting machine has high stability and safety in the transverse movement amplitude passing process, and the bridge erecting machine transverse movement amplitude passing system is suitable for the technical field of bridge construction equipment.
本发明公开了一种架桥机,旨在提供一种施工效率高,工期短,费用花费少,并且过幅过程安全可靠的用于架桥机横移过幅的杠杆平衡系统及其控制方法,其技术方案要点是所述的架桥机主体结构为多段桁架联接梁,易于拆装、便于施工现场转移,横移一次到位,抗风能力大,能够确保安全作业,并且通过架桥机的转盘功能,控制架桥机在0°~45°之间进行横移过幅,安全可靠,且与传统架桥机过幅作业相比,耗费的时间短,需要的费用少,横移的效率高,同时,所述的中央控制装置与红外传感器相互配合实现对架桥机两侧的受力情况进行计算,使得架桥机在横移过幅的过程中具有较强的稳定性与安全性,本发明适用于桥梁建设设备技术领域。
Lever balance system for transverse movement amplitude passing of bridge girder erection machine and control method of lever balance system
The invention discloses a bridge girder erection machine, and aims to provide a lever balance system for transverse movement and amplitude crossing of the bridge girder erection machine, which is high in construction efficiency, short in construction period, low in cost and safe and reliable in amplitude crossing process, and a control method of the lever balance system for transverse movement and amplitude crossing of the bridge girder erection machine. The bridge erecting machine is easy to disassemble and assemble, convenient to transfer on a construction site, capable of transversely moving in place at a time, large in wind resistance, capable of ensuring safe operation, safe and reliable, capable of controlling the bridge erecting machine to transversely move in the range from 0 degree to 45 degrees through the function of the rotating disc of the bridge erecting machine, short in consumed time, low in needed cost, high in transverse moving efficiency and capable of reducing the construction cost compared with traditional bridge erecting machine transverse moving operation. The central control device and the infrared sensor are matched with each other to calculate the stress conditions of the two sides of the bridge erecting machine, so that the bridge erecting machine has high stability and safety in the transverse movement amplitude passing process, and the bridge erecting machine transverse movement amplitude passing system is suitable for the technical field of bridge construction equipment.
本发明公开了一种架桥机,旨在提供一种施工效率高,工期短,费用花费少,并且过幅过程安全可靠的用于架桥机横移过幅的杠杆平衡系统及其控制方法,其技术方案要点是所述的架桥机主体结构为多段桁架联接梁,易于拆装、便于施工现场转移,横移一次到位,抗风能力大,能够确保安全作业,并且通过架桥机的转盘功能,控制架桥机在0°~45°之间进行横移过幅,安全可靠,且与传统架桥机过幅作业相比,耗费的时间短,需要的费用少,横移的效率高,同时,所述的中央控制装置与红外传感器相互配合实现对架桥机两侧的受力情况进行计算,使得架桥机在横移过幅的过程中具有较强的稳定性与安全性,本发明适用于桥梁建设设备技术领域。
Lever balance system for transverse movement amplitude passing of bridge girder erection machine and control method of lever balance system
一种用于架桥机横移过幅的杠杆平衡系统及其控制方法
GUO HAIQING (author)
2024-09-24
Patent
Electronic Resource
Chinese
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