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A kind of construction reinforcement cage welding method

A welding method and technology for building steel bars, applied in welding equipment, roller electrode welding, resistance welding equipment, etc., can solve the problems of complex equipment structure, increase equipment weight and energy consumption, increase counterweight, etc., and achieve simplified equipment structure , reduce cost and energy consumption, facilitate transportation and installation

Active Publication Date: 2022-04-05
安徽企路石工程技术开发有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Both of these two feeding methods have a common defect that the equipment structure is extremely complex. For the first method, the weight of the coiled material roll ranges from a few hundred kilograms to several tons. To make such a huge unit wind The slewing of the longitudinal tendon requires a huge drive system, and in order to avoid vibration, it is generally necessary to add a counterweight to the slewing device, which further increases the weight of the equipment and energy consumption; for the second method, although the The feeding method has become simpler, but the conveying mechanism of the longitudinal bars has become more complicated. To achieve this and because the longitudinal bars are constantly rotating, a support mechanism that rotates synchronously needs to be set at the discharge end of the reinforcement cage to support the reinforcement cage. , further increasing the complexity of the system

Method used

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  • A kind of construction reinforcement cage welding method
  • A kind of construction reinforcement cage welding method
  • A kind of construction reinforcement cage welding method

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Embodiment 1

[0031] Such as figure 1 , 2 , 3, a steel cage welding device, including a longitudinal reinforcement conveying mechanism 20, a distribution mechanism around the reinforcement 30 and a welding machine 40, the longitudinal reinforcement conveying mechanism 20 includes a plurality of longitudinal reinforcement channels 21 arranged horizontally and for driving The longitudinal rib 1 shuttles through the longitudinal rib driving mechanism 22 in the longitudinal rib channel 21, and each longitudinal rib channel 21 is arranged in an annular array; the coiled rib distribution mechanism 30 is located on the conveying path of the longitudinal rib, and the coiled rib distribution mechanism 30 includes The roller 31 that winds around the rib 2, the roller 31 is rotatably arranged on the frame 10, and the frame 10 is provided with a driving unit 34 for driving the rotation of the roller 31, the driving unit 34 is a motor, and the motor passes through a gear The pair and the roller 31 form...

Embodiment 2

[0040] A method for welding a building reinforcement cage, using the above-mentioned reinforcement cage welding device for welding, specifically comprising the following steps:

[0041] Step 1: Connect the end of the reel at the outlet of the wire feeding mechanism 50 to the roller 31, then drive the roller 31 to rotate, and at the same time, the wire feeding mechanism 50 continues to feed the wire, so that the reel is wound on the roller 31. After the ribs are wound for a specified number of turns, the roller 31 stops rotating, and then the ribs are cut from the outlet of the wire feeding mechanism 50;

[0042] Step 2: Insert the longitudinal ribs in the longitudinal rib driving mechanism 22 in sequence, and start the longitudinal rib driving mechanism 22;

[0043] Step 3: When the ends of the longitudinal ribs pass through the end of the release mechanism of the roller 31, the release mechanism releases the winding ribs wound on the roller 31 one by one and winds them on eac...

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Abstract

The invention belongs to the technical field of building construction, that is, welding and processing of building materials, and in particular relates to a construction reinforcement cage welding method, which includes the following steps: winding the rebar on a roller, starting the driving mechanism of the longitudinal rebar; When the end where the release mechanism is located passes through, the release mechanism will release the coiled ribs wound on the roller one by one and wind them on each longitudinal rib; when the intersection of the longitudinal ribs and the coiled ribs passes through the welding machine, the welding machine will The two are welded; the present invention pre-wraps the winding bars on the walking path of the longitudinal bars, and then releases the spiraled bars to the longitudinal bars one by one during the feeding process of the longitudinal bars. Neither the longitudinal bar conveying mechanism nor the winding bar feeding mechanism needs to be rotated, which greatly simplifies the equipment structure, facilitates transportation and installation, is suitable for field operations, and greatly reduces the cost and energy consumption of the automatic welding equipment for steel cages.

Description

technical field [0001] The invention belongs to the technical field of building construction, that is, welding processing of building materials, and in particular relates to a method for welding a building reinforcement cage. Background technique [0002] The reinforcement cage is mainly composed of longitudinal reinforcement, winding reinforcement and stirrup reinforcement. The winding reinforcement is continuously wound in a spiral shape and welded on the outside of the longitudinal reinforcement. The traditional reinforcement cage welding is generally operated by mechanical winding and manual welding. There have been some large-scale welding equipment that can automatically complete the entire welding process. These equipment are mainly divided into two categories. One is that the longitudinal ribs only walk and do not rotate, while the longitudinal ribs are wound around the ribs and continue to feed materials to the periphery of the longitudinal ribs. One type is that th...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B23K11/06B23K11/36
CPCB23K11/06B23K11/36
Inventor 储顺清姜珊刘真
Owner 安徽企路石工程技术开发有限公司