Connection joint and connection method of frp reinforcement

A technology for connecting joints and connecting methods, which is applied to the connecting joints connecting FRP bars, and the field of connecting FRP bars using connecting joints, which can solve the problems of affecting the high-strength performance of FRP bars and wasting FRP bars. Mechanical connection problems, improved bonding performance, efficient and fast connection

Inactive Publication Date: 2018-01-02
CENT RES INST OF BUILDING & CONSTR CO LTD MCC GRP +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

FRP bars are prefabricated materials in the factory. There is no mature technology for on-site processing and connection. They are basically connected by lap joints, which not only wastes FRP bars, but also tends to form weak layers at the overlaps of FRP bars, which affects FRP bars. Exercising high-strength performance

Method used

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  • Connection joint and connection method of frp reinforcement
  • Connection joint and connection method of frp reinforcement
  • Connection joint and connection method of frp reinforcement

Examples

Experimental program
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Embodiment Construction

[0026] combine figure 1 and figure 2 As shown, the connection joint of the FRP bar of the present invention includes a circular stainless steel sleeve 1 and a central partition plate 2, the center of the sleeve 1 is provided with an axial through hole 11, and the central partition plate 2 is arranged on the sleeve 1 and fixed in the center of the axial through hole 11 of the sleeve 1, the central partition plate 2 is perpendicular to the axis of the sleeve 1, that is, parallel to the cross section of the sleeve 1, as Figure 4 As shown, the central partition plate 2 is approximately circular, and a gap 13 is formed between the central partition plate 2 and the inner wall of the sleeve 1, and the side wall of the central partition plate 2 is fixed to the inner wall of the sleeve 1, and the center partition The height of the highest point of the plate 2 is 0.75H, where H is the outer diameter of the sleeve 1 .

[0027] recombine graph and Figure 5 As shown, the outer surfac...

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Abstract

The invention relates to a connection joint and a connection method for FRP reinforcements, which relate to a connection method for connecting FRP reinforcements to FRP reinforcements using connection joints. The connecting joint of the FRP bar of the present invention comprises a sleeve and a central partition plate, the center of the sleeve is provided with an axial through hole, the central partition plate is arranged in the sleeve and fixed at the center of the axial through hole of the sleeve, and the center The side wall of the dividing plate is fixed to the inner wall of the sleeve. The connection method of the FRP reinforcement of the present invention adopts the above-mentioned connection joint and injects the reinforcement glue into the connection joint to complete the connection of the FRP reinforcement, which reduces the overlapping length of the FRP reinforcement, avoids the waste of the FRP reinforcement, and saves costs , plug and play, fast and efficient connection, improved the strength of FRP bars, and more reliable bonding with concrete.

Description

technical field [0001] The invention relates to a connection joint, in particular to a connection joint for connecting FRP bars; the invention also relates to a connection method, in particular to a connection method for connecting FRP bars with a connection joint. Background technique [0002] High-performance Fiber Reinforced Plastic (FRP) reinforcement is an integral reinforcement formed by impregnating high-performance continuous fibers such as carbon fiber and glass fiber in a resin with good corrosion resistance. FRP bars have the advantages of high strength, low specific gravity, corrosion resistance, and non-magnetic properties. They can be used with concrete instead of traditional steel bars, which can reduce the weight of the structure, increase the bearing capacity of the structure, and prolong the life of the structure, especially in harsh environments (high temperature, High humidity, coastal and marine structures, etc.), can better play the advantages of FRP co...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E04C5/16E04C5/18E04G21/12
Inventor 陈小兵岳清瑞陈文永丁一阳涛黄宇刚李荣陈烈刘宗全胡乔
Owner CENT RES INST OF BUILDING & CONSTR CO LTD MCC GRP
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