Self reset curvature-prevention support component

An anti-buckling support and self-resetting technology, which is applied to building components, on-site preparation of building components, pillars, etc., can solve problems such as excessive residual deformation, increase post-earthquake maintenance, and dissipate earthquake energy to reduce residual deformation , avoid bolt loosening, and avoid the effect of friction surface aging

Inactive Publication Date: 2010-09-08
HARBIN INST OF TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] The purpose of the present invention is to solve the problem of excessive residual deformation of the structure installed with traditional buckling-resistant support members after a large or moderate earthquake, which greatly increases post-earthquake maintenance and reconstructi

Method used

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  • Self reset curvature-prevention support component
  • Self reset curvature-prevention support component
  • Self reset curvature-prevention support component

Examples

Experimental program
Comparison scheme
Effect test

Example Embodiment

[0011] Specific embodiment one: combination figure 1 To illustrate this embodiment, the anti-buckling support member of this embodiment is connected by a square outer tube 1, a square inner sleeve 2, a first end plate 5, a second end plate 6, a first convex connecting plate 10, and a second convex connection. The plate 11, two energy-consuming inner core plates 3, multiple restoring ribs 4, two connecting plates 7 and two diagonal steels 8 are formed. The first convex connecting plate 10 is arranged between the two energy-consuming inner core plates 3 And the upper and lower side walls of the first convex connecting plate 10 are each fixed to an energy consuming inner core plate 3, and each connecting plate 7 is arranged outside the corresponding energy consuming inner core plate 3 and The two are fixedly connected; a pair of angle steels 8 are respectively provided on a pair of outer surfaces of the square outer sleeve 1, one end of the pair of angle steels 8 is fixed to the sq...

Example Embodiment

[0013] Specific implementation manner two: combination figure 1 To illustrate this embodiment, the gap between each energy-consuming inner core plate 3 and the upper and lower side walls of the square inner sleeve 2 is 1-2 mm, and is connected to the energy-consuming inner core plate 3 at one end. The advantage of this structure is that the square inner sleeve 2 acts as a restraining member for the anti-buckling support to realize the energy dissipation effect of the inner core; at the same time, this structure plays a role in the self-resetting support for the first end plate 5 and the second end plate. 6 and the function of the reduction rib 4 to transmit force to achieve the purpose of self-reset. Therefore, it is ensured that the invention realizes the dual functions of anti-buckling support and self-reset support. Other components and connection relationships are the same as those in the first embodiment.

Example Embodiment

[0014] Specific implementation mode three: combination figure 1 To illustrate this embodiment, the gap between the side wall of the square inner sleeve 2 and the side wall of the square outer sleeve 1 is 1-2 mm, and one end is fixed to the energy-consuming inner core plate 3. The advantage is that the square inner sleeve 2 acts as a restraining member for the anti-buckling support to realize the energy dissipation effect of the inner core; at the same time, this structure acts as a self-resetting support to the first end plate 5, the second end plate 6 and the reset rib 4 The effect of force to achieve self-reset purpose. Therefore, it is ensured that the invention realizes the dual functions of anti-buckling support and self-reset support. Other components and connection relationships are the same as those in the first embodiment.

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Abstract

The invention relates to a self reset curvature-prevention support component, which relates to a curvature-prevention support component. The invention aims at solving the problems that the existing structure for installing a traditional curvature-prevention support component generates excessive residual deformation after major earthquake or moderate earthquake, so the maintenance and rebuilding cost after the earthquake is greatly increased, and the existing friction type self reset support component can not consume the earthquake energy because of the looseness of connecting screw bolts of a friction plate and easy ageing of the friction surface. A square inner sleeve pipe, two energy consumption inner core plates and a first convex connecting plate are connected in a square inner sleeve pipe, each connecting plate is fixedly connected with a pair of angle irons, one end of each reset rib is connected with a first end plate, the other end of each reset rib is connected with a second end plate, the first convex connecting plate passes through a through hole of the first end plate to be arranged outside the first end plate, two side surfaces of a square outer sleeve pipe are respectively in contact with the first end plate and the second end plate, and the second convex connecting plate is fixedly connected in the two pairs of angle irons. The invention is used in lateral-force-resistance components in the field of building structure engineering.

Description

technical field [0001] The present invention relates to a buckling-resistant brace member. Background technique [0002] Earthquake disasters have had a great impact on people's lives, mainly due to excessive damage or collapse of building structures during earthquakes. Passive control system is one of the structural vibration control systems, and is currently considered to be the most effective and feasible method to reduce the damage of the main structure. According to different damping mechanisms, passive control devices can be divided into metal dampers, friction dampers, viscous dampers, and viscoelastic dampers. [0003] Among these control devices, the buckling-resistant bracing member (BRB) has been most widely used. This is an invented support form applied to the lateral force resistance system of multi-story buildings in recent years, and it is also an efficient energy-dissipating shock absorber (damper). The non-adhesive material or gap provided between the abo...

Claims

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Application Information

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IPC IPC(8): E04G25/04E04B1/98
Inventor 吴斌刘璐赵俊贤
Owner HARBIN INST OF TECH
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