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Bridge support and intelligent monitoring method of bridge support
The invention discloses a bridge support which comprises a support body made of rubber materials and a metal unit embedded in the support body, and the metal unit comprises a first metal sheet, a second metal sheet and a third metal sheet which are sequentially arranged in parallel at intervals in the pressed direction of the support body. When the bridge support is not subjected to shearing force, the first metal sheet and the third metal sheet are the same in shape, the projection shapes of the first metal sheet and the third metal sheet on the bottom face of the support body are completelyoverlapped, and the second metal sheet is arranged right opposite to the first metal sheet. The invention further discloses an intelligent monitoring method of the bridge support. The intelligent monitoring method is applied to the bridge support. The technical problems that in the prior art, when deformation detection is conducted on a bridge support, an extra sensor needs to be arranged, and remote real-time monitoring is difficult to achieve are solved.
本发明公开了一种桥梁支座,所述桥梁支座包括:由橡胶材料制成的支座主体和嵌入所述支座主体内的金属单元,所述金属单元包括:沿所述支座主体的受压方向依次平行且间隔设置的第一金属片、第二金属片和第三金属片,在所述桥梁支座未受剪切力时,所述第一金属片和所述第三金属片的形状相同且二者在所述支座主体的底面的投影形状完全重合,所述第二金属片正对所述第一金属片设置。本发明还公开了一种桥梁支座的智能监测方法,应用于如上所述的桥梁支座。本发明旨在解决现有技术中对桥梁支座进行变形检测时,需要设置额外传感器,且难以实现远程实时监控的技术问题。
Bridge support and intelligent monitoring method of bridge support
The invention discloses a bridge support which comprises a support body made of rubber materials and a metal unit embedded in the support body, and the metal unit comprises a first metal sheet, a second metal sheet and a third metal sheet which are sequentially arranged in parallel at intervals in the pressed direction of the support body. When the bridge support is not subjected to shearing force, the first metal sheet and the third metal sheet are the same in shape, the projection shapes of the first metal sheet and the third metal sheet on the bottom face of the support body are completelyoverlapped, and the second metal sheet is arranged right opposite to the first metal sheet. The invention further discloses an intelligent monitoring method of the bridge support. The intelligent monitoring method is applied to the bridge support. The technical problems that in the prior art, when deformation detection is conducted on a bridge support, an extra sensor needs to be arranged, and remote real-time monitoring is difficult to achieve are solved.
本发明公开了一种桥梁支座,所述桥梁支座包括:由橡胶材料制成的支座主体和嵌入所述支座主体内的金属单元,所述金属单元包括:沿所述支座主体的受压方向依次平行且间隔设置的第一金属片、第二金属片和第三金属片,在所述桥梁支座未受剪切力时,所述第一金属片和所述第三金属片的形状相同且二者在所述支座主体的底面的投影形状完全重合,所述第二金属片正对所述第一金属片设置。本发明还公开了一种桥梁支座的智能监测方法,应用于如上所述的桥梁支座。本发明旨在解决现有技术中对桥梁支座进行变形检测时,需要设置额外传感器,且难以实现远程实时监控的技术问题。
Bridge support and intelligent monitoring method of bridge support
一种桥梁支座及一种桥梁支座的智能监测方法
YIN XIAOBO (Autor:in) / HU ZECHAO (Autor:in) / BI XIAOMENG (Autor:in)
08.01.2021
Patent
Elektronische Ressource
Chinesisch
IPC:
E01D
BRIDGES
,
Brücken
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