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Bridge anti-seismic damper structure with rotational friction energy dissipation

A technology of rotational friction and damper, applied in bridges, bridge parts, bridge construction, etc., can solve the problems of high tensile stiffness, device damage, bridge damage, etc., and achieve the effect of simple structure, easy repair, and convenient construction

Pending Publication Date: 2020-07-24
NANCHANG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

These connecting devices mainly rely on the damping produced by the device itself on the beam body during the earthquake to hinder the relative displacement of the beam body, thereby playing a position-limiting role. However, due to the large tensile stiffness, a large seismic force is transmitted, not only for The device itself caused too much damage and would exert too much damping force on the bridge, thus causing too much damage to the bridge

Method used

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  • Bridge anti-seismic damper structure with rotational friction energy dissipation
  • Bridge anti-seismic damper structure with rotational friction energy dissipation
  • Bridge anti-seismic damper structure with rotational friction energy dissipation

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Embodiment Construction

[0023] Below the present invention is further described:

[0024] see Figure 1-4 ,

[0025] The invention discloses a structure of a bridge anti-seismic damper with rotational frictional energy consumption, which comprises a limiting member 1, a friction rod 3, a friction ball 6, a cylinder 8, a piston rod 7 of the cylinder 8, and a fixed hinge support 9;

[0026] The stopper 1 is fixed above the side wall of the pier 22, the stopper 1 is a square structure with a groove 23 at the top, and the front and rear surfaces are provided with connecting holes 5 for the friction rod 3 to pass through. The bottom of the groove 23 is provided with a spherical groove 13 for placing the friction ball 6, the bottom of the spherical groove 13 communicates with the connecting hole 5, and the friction ball 6 is fixed on the end of the piston rod 7. part, its side wall is provided with a round hole 18 for the friction rod 3 to pass through;

[0027] The top of the cylinder 8 is hinged with ...

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Abstract

The invention discloses a bridge anti-seismic damper structure with rotational friction energy dissipation. The bridge anti-seismic damper structure comprises a limiting piece, a friction rod, a friction ball, an air cylinder, a piston rod of the air cylinder and a fixed hinge support; the limiting piece is fixed above the side wall of a pier, and the friction rod is fixed in the limiting piece, penetrates through the friction ball and is connected with the friction ball; the bottom of the piston rod is connected with the friction ball, and one section of the top of the piston rod is located in the air cylinder; the top end of the air cylinder is hinged to the fixed hinge support; and the fixed hinge support is fixed at the bottom of a beam body. The bridge anti-seismic damper structure is reasonable in design; the friction ball and the friction rod are arranged, and earthquake energy is consumed by fully utilizing rotational friction caused by beam body displacement; and the air cylinder and the piston rod are arranged, so vibration energy of the bridge during earthquakes is absorbed through damping generated by compressed flowing of air, and relative large displacement of the bridge body and the bridge pier is limited. The bridge anti-seismic damper structure is simple in structure, convenient to construct and low in cost.

Description

technical field [0001] The invention belongs to the field of bridge anti-seismic technology, and in particular relates to a bridge anti-seismic damper structure with rotational friction energy consumption. Background technique [0002] Bridges are one of the country's basic constructions and play a pivotal role in transportation and national economic development. In recent years, with the rapid development of my country's social economy and technology and the continuous acceleration of urbanization, the demand for both river-crossing bridges and urban viaducts has increased, and many bridge construction projects have appeared one after another. The numbers and investments are growing. As an important transportation hub, the safety of the bridge is the prerequisite for the function of the bridge. However, under the influence of earthquakes, bridges may be severely damaged or even collapsed, which not only causes huge economic losses, but also threatens people's lives and bri...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E01D19/04E01D19/00
CPCE01D19/00E01D19/042
Inventor 田钦宋鹏樊霖涛伍群涛
Owner NANCHANG UNIV
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