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Anti-overturning balancing device and method for single-column pier bridge
The invention relates to the technical field of bridge anti-overturning balance, in particular to a single-column-pier bridge anti-overturning balance device and method, a pier and a bridge installed on the upper portion of the pier. A first pressure sensor and a second pressure sensor are fixedly installed at the bottom of the left side beam body and the bottom of the right side beam body respectively, the bottom end of the first pressure sensor and the bottom end of the second pressure sensor are fixedly connected with the top of the bridge pier, sliding grooves are formed in the two opposite sides of the bridge pier, and the two sliding grooves are formed in the height direction of the bridge pier. The height of the bottom end of the elastic supporting assembly is changed through the two pressure-equalizing balancing devices, so that supporting of the elastic supporting assembly to the left beam body and the right beam body is enhanced, the left beam body and the right beam body are kept in a balanced supporting mode, the transverse stability of the bridge is enhanced, and the situation that the left beam body and the right beam body are damaged due to too large pressure is avoided. And the fracture effect is generated.
本发明涉及桥梁抗倾覆平衡的技术领域,尤其是一种独柱墩桥梁抗倾覆平衡装置和方法,其桥墩和安装在桥墩上部的桥梁,所述桥梁包括左侧梁体和右侧梁体,所述左侧梁体和右侧梁体的底部分别固定安装有第一压力传感器和第二压力传感器,所述第一压力传感器和第二压力传感器的底端均与桥墩的顶部固定连接,所述桥墩的相对两侧均设有滑槽,两个所述滑槽沿桥墩的高度方向设置。本发明具有通过两个均压平衡装置分别改变弹性支撑组件底端的高度,从而加强弹性支撑组件给予左侧梁体和右侧梁体支撑,使得左侧梁体和右侧梁体支撑保持平衡,进而增强桥梁的横向稳定,避免左侧梁体和右侧梁体因压力过大,发生断裂的效果。
Anti-overturning balancing device and method for single-column pier bridge
The invention relates to the technical field of bridge anti-overturning balance, in particular to a single-column-pier bridge anti-overturning balance device and method, a pier and a bridge installed on the upper portion of the pier. A first pressure sensor and a second pressure sensor are fixedly installed at the bottom of the left side beam body and the bottom of the right side beam body respectively, the bottom end of the first pressure sensor and the bottom end of the second pressure sensor are fixedly connected with the top of the bridge pier, sliding grooves are formed in the two opposite sides of the bridge pier, and the two sliding grooves are formed in the height direction of the bridge pier. The height of the bottom end of the elastic supporting assembly is changed through the two pressure-equalizing balancing devices, so that supporting of the elastic supporting assembly to the left beam body and the right beam body is enhanced, the left beam body and the right beam body are kept in a balanced supporting mode, the transverse stability of the bridge is enhanced, and the situation that the left beam body and the right beam body are damaged due to too large pressure is avoided. And the fracture effect is generated.
本发明涉及桥梁抗倾覆平衡的技术领域,尤其是一种独柱墩桥梁抗倾覆平衡装置和方法,其桥墩和安装在桥墩上部的桥梁,所述桥梁包括左侧梁体和右侧梁体,所述左侧梁体和右侧梁体的底部分别固定安装有第一压力传感器和第二压力传感器,所述第一压力传感器和第二压力传感器的底端均与桥墩的顶部固定连接,所述桥墩的相对两侧均设有滑槽,两个所述滑槽沿桥墩的高度方向设置。本发明具有通过两个均压平衡装置分别改变弹性支撑组件底端的高度,从而加强弹性支撑组件给予左侧梁体和右侧梁体支撑,使得左侧梁体和右侧梁体支撑保持平衡,进而增强桥梁的横向稳定,避免左侧梁体和右侧梁体因压力过大,发生断裂的效果。
Anti-overturning balancing device and method for single-column pier bridge
一种独柱墩桥梁抗倾覆平衡装置和方法
NI YUNZHONG (author) / LIU YANG (author) / HE XILIANG (author) / QIN CHAO (author) / SHEN KAIKAI (author)
2024-09-03
Patent
Electronic Resource
Chinese
IPC:
E01D
BRIDGES
,
Brücken
/
G01L
Messen von Kraft, mechanischer Spannung, Drehmoment, Arbeit, mechanischer Leistung, mechanischem Wirkungsgrad oder des Drucks von Fluiden
,
MEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
/
G08B
SIGNALLING OR CALLING SYSTEMS
,
Signalisier- oder Rufsysteme
/
G08G
Anlagen zur Steuerung, Regelung oder Überwachung des Verkehrs
,
TRAFFIC CONTROL SYSTEMS
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