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Self-resetting steel frame beam-side-column joint with web friction type shape memory alloy rod

A memory alloy, steel frame beam technology, applied in building types, buildings, building components, etc., can solve the problems of beam flange buckling deformation, inconvenient floor layout, etc., to control residual deformation, reduce cost and difficulty, and solve the problem of inconvenient floor layout. Effect

Active Publication Date: 2019-04-30
SOUTHEAST UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] Technical problem: The present invention provides a structure that overcomes the inconvenience of floor layout caused by the arrangement of shape memory alloy rods on the outside of the beam flange and the local buckling deformation of the beam flange, effectively enhances the energy dissipation capacity and self-resetting performance of nodes, and improves the replaceability of components. Web Friction Shape Memory Alloy Rod Self-resetting Steel Frame Beam-Side Column Joints

Method used

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  • Self-resetting steel frame beam-side-column joint with web friction type shape memory alloy rod
  • Self-resetting steel frame beam-side-column joint with web friction type shape memory alloy rod
  • Self-resetting steel frame beam-side-column joint with web friction type shape memory alloy rod

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Embodiment Construction

[0028] The technical solution of the present invention will be described in detail below in conjunction with the accompanying drawings.

[0029] like figure 1 As shown, the web friction type shape memory alloy rod self-resetting steel frame beam-side column joint of the present invention includes a steel column 2, a steel beam 1 located on one side of the steel column 2, and a shape memory alloy crossing the steel column 2 Rod 3, L-shaped bracket located inside the steel beam flange 6, friction energy dissipator located in the middle of the web of steel beam 1; the friction energy dissipator includes channel steel 4 connecting the flange of steel column 2 and the web of steel beam 1, filling The energy-dissipating friction plate 13 between the channel steel 4 and the web of the steel beam 1, and the high-strength bolts passing through the web of the steel beam 1 and connecting the channel steel 4, the energy-dissipating friction plate 13 and the web of the steel beam 1 5.

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Abstract

The invention discloses a web friction-type shape-memory alloy rod self-resetting steel frame beam-edge column joint comprising steel columns, steel beams, shape-memory alloy rods, L-shaped supports and friction energy dissipaters. The steel beams are located on one sides of the steel columns; the shape-memory alloy rods transversely penetrate through the steel columns; the L-shaped supports are located on the inner sides of flanges of the steel beams; and the friction energy dissipaters are located in the middles of webs of the steel beams and comprise channel steel, energy dissipation friction pieces and high-strength bolts, wherein the channel steel is connected with flanges of the steel columns and the webs of the steel beams, the energy dissipation friction pieces are arranged between the channel steel and the webs of the steel beams in a filling mode, and the high-strength bolts penetrate through the webs of the steel beams and enable the channel steel, the energy dissipation friction pieces and the webs of the steel beams to be connected together. Arranging convenience of a floor at the joint can be improved; the anchoring effect of the shape-memory alloy rods and the steel beam ends is strengthened while the local deformation resistant capability of the flanges of the steel beams is reinforced; and the replaceability of members is improved while the self-resetting performance and hysteretic energy dissipation of the joint are effectively improved.

Description

technical field [0001] The invention belongs to the field of civil engineering and relates to a self-resetting steel frame beam-side column joint of a web friction type shape memory alloy rod. Background technique [0002] Earthquakes bring extremely serious disasters to human beings. The traditional seismic design adopts the ductility design method, that is, under the action of an earthquake, through the early yield and failure of some structural components, but the overall function is not lost, most of the seismic energy is dissipated by the plastic deformation of the components, so as to achieve the main body purpose of structural safety. [0003] As an important part of the frame structure, the beam-column connection has a great influence on the recoverable function of the structure. With the development of the concept of performance-based seismic design, the functional requirements of improving the recoverability of structures by controlling the residual deformation o...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E04B1/24E04B1/58E04B1/98E04H9/02
CPCE04B1/2403E04H9/021E04H9/024
Inventor 李灿军周臻
Owner SOUTHEAST UNIV
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