Locking device for bridge structure shock absorption control

A technology for locking devices and bridge structures, applied in bridges, bridge parts, bridge construction, etc., can solve the problems of not being able to reduce the force on bridge piers, and having no energy consumption effect, so as to increase the strength, reduce the dynamic response, and speed up the locking speed Effect

Inactive Publication Date: 2014-01-22
SOUTHEAST UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, this device still has certain limitations in the application of bridge engineering, such as it has no energy dissipation effect under earthquake action so that it cannot reduce the stress on the bridge pier, and has no limiting effect on the torsional effect of components, etc.

Method used

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  • Locking device for bridge structure shock absorption control
  • Locking device for bridge structure shock absorption control
  • Locking device for bridge structure shock absorption control

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Embodiment Construction

[0021] The novel locking device used for bridge structure damping control of the present invention comprises a pull rod 1, a right piston plate 2, a middle piston plate 3, a left piston plate 4, a left cover 5, a cylinder body 6, silicone oil 7, a front cover 8, and a rubber plate 9. Bolt 10, aperture self-adjusting system 15; wherein the aperture self-adjusting system 15 includes a drainage hole 11, a trapezoidal steel block 12, a spring 13, and an orifice 14. Among them, the three piston pieces are shaped like fan blades and have the same thickness. From left to right, the three are directly fabricated on the tie rod in the form of fan blades alternately, so as to ensure the sealing performance of the piston when the throttle hole is closed; the cylinder body of this device It is filled with silicone oil, and the silicone oil is divided into three parts by the left piston and the right piston, and rubber sheets are stuck on the circumference of the piston; when the pull rod m...

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PUM

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Abstract

According to a locking device for bridge structure shock absorption control, three fan-blade-shaped piston pieces are overlapped to form a piston of the device, rubber pieces are adhered to the outer layers of the three fan-blade-shaped piston pieces, the piston is fixed to a pull rod, the piston and the pull rod are arranged in an oil cylinder filled with silicone oil, the oil cylinder is thereby divided into three portions through the left piston piece and the right piston piece, and the pull rod drives the piston to conduct longitudinal displacement and torsional displacement. The viscous force produced when the silicone oil passes through orifices controls the movement of the pull rod, the left piston piece and the right piston piece are simultaneously locked, and the locking strength of the device is enhanced. Meanwhile, hole diameter automatic adjusting systems are arranged inside the left piston piece and the right piston piece respectively, and each hole diameter automatic adjusting system is composed of a drainage hole, one of the orifices, two springs and a trapezoid steel block, and the longitudinal locking speed of the device is improved through the pressure intensity difference caused by the difference of the flow velocities of liquid on two sides of the trapezoid steel block when the piston moves. Furthermore, the fan-blade-shaped piston pieces of the device stir the silicone oil to flow when torsional displacement occurs, and the force exerted by an earthquake on a bridge structure is reduced through energy produced by the earthquake in the viscosity dissipation portion of the locking device.

Description

technical field [0001] The invention relates to a bridge structure displacement control device, which is characterized in that it allows slow deformations caused by temperature expansion, contraction, creep, etc. between the main components of the bridge structure, but can lock the components under extreme loads such as earthquakes , to limit the relative displacement between components. Background technique [0002] Earthquake is one of the major natural disasters, which has caused huge casualties and property losses to mankind. In recent years, my country's seismic activity has been relatively frequent. On April 20, 2013, a magnitude 7.0 earthquake occurred in Ya'an, Sichuan, killing 196 people and injuring 11,470. On April 14, 2010, a magnitude 7.1 earthquake in Yushu, Qinghai killed 2,698 people and caused economic losses of more than 80 billion yuan; on June 30, 2009, a magnitude 6.0 earthquake in Yao'an, Yunnan caused a total of 2.059 million yuan in three cities incl...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E01D19/00
Inventor 王浩茅建校郭彤陶天友
Owner SOUTHEAST UNIV
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