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A device and method for rotating electric-magnetic field synchronously assisted laser welding

A technology of laser welding and synchronous assistance, which is applied in auxiliary devices, auxiliary welding equipment, laser welding equipment, etc.

Active Publication Date: 2020-06-23
CHANGCHUN UNIV OF SCI & TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] The purpose of the present invention is to provide a special welding device and method for electro-magnetic synchronous assisted laser welding. A synchronous rotating magnetic field is provided by NdFeB permanent magnets and a direct drive motor, and a vertical longitudinal electric field is applied to jointly play a role in the molten pool. Magnetic stirring effect to solve problems such as laser welding joint forming quality

Method used

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  • A device and method for rotating electric-magnetic field synchronously assisted laser welding
  • A device and method for rotating electric-magnetic field synchronously assisted laser welding
  • A device and method for rotating electric-magnetic field synchronously assisted laser welding

Examples

Experimental program
Comparison scheme
Effect test

Embodiment example 1

[0080] Implementation case 1: Electric-magnetic field assisted laser welding industrial pure nickel Ni201

[0081] First, wipe off the oil stains and other dirt on the surface of many pieces of industrial pure nickel Ni201 to be welded with acetone, and then dry them with wind after wiping, and keep them dry and clean. Put industrial pure nickel on the base plate of the electric field, and control the manual switch 8 of the pneumatic valve in the external air circuit connected to the rotary cylinder 23 (the electric-magnetic valve can be used to control the on-off of the air circuit in automatic production), and the rotation can be realized. The transition between the working states of the cylinder 23. Switch the cylinder to working mode, as figure 2 Shown is the clamping working state of the rotary cylinder 23.

[0082] Secondly, set the welding parameters of pure nickel in CNC welding industry: laser power P=1500W, welding speed V=600mm / min, use the mixed gas of helium an...

Embodiment example 2

[0086] After the test case 1 is completed, take another piece of processed industrial pure nickel and put it on the electric field generating base plate 24, and toggle the manual switch 8 of the pneumatic valve to make the workpiece pressing block 17 press the workpiece 13. Loosen the screws that fix the NdFeB permanent magnets, shorten the distance between the two permanent magnets, use a magnetic field strength tester to test that the magnetic field strength at the laser focus position is 70mT, and set the parameters of the encoder to control the speed of the direct drive motor. 200r / min. The electric field does not interact with the weld puddle.

[0087] Then start the CO2 laser to weld the industrial pure nickel sheet. After the welding is completed, adjust the manual switch 8 of the pneumatic valve to make the piston of the rotary cylinder 23 rise, and the workpiece pressing block 17 leaves the workpiece surface to take off the workpiece. Using wire cutting along the di...

Embodiment example 3

[0089] After the test case 2 is completed, another piece of processed industrial pure nickel is placed on the electric field generating base plate 24, and the manual switch 8 of the pneumatic valve is toggled to make the workpiece pressing block 17 press the workpiece 13. The magnetic field strength is still 70mT, and the parameters of the encoder are set to control the speed of the direct drive motor to 600r / min. Start the power supply 10 and adjust the output voltage to 20V.

[0090] Then start the CO2 laser to weld the industrial pure nickel sheet. After the welding is completed, adjust the manual switch 8 of the pneumatic valve to make the piston of the rotary cylinder 23 rise, and the workpiece pressing block 17 leaves the workpiece surface to take off the workpiece. Using wire cutting along the direction perpendicular to the welding direction, the metallographic sample is cut in the cross section. The surface of the sample is ground and polished, corroded by nitric acid...

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Abstract

The invention discloses a device and method for synchronously assisted laser welding by a rotating electric-magnetic field, which belongs to the field of laser welding. The welding device includes an electric and magnetic adjustment device, a positioning and clamping tool, a support column and a rotary cylinder in the positioning and clamping tool They are all installed on the bottom plate, the electric field generation bottom plate is installed on the support column, the pressure block is installed on the rotary cylinder, the NdFeB permanent magnet in the electric and magnetic field adjustment device is fastened on the magnetic field adjustment plate, the insulating sleeve, welding laser head And the magnetic field adjustment disc is installed on the direct drive motor, the direct drive motor is installed on the main shaft, and the two poles of the electric field power supply are respectively connected to the electric field generating base plate and the welding laser head. The invention can realize the simple and rapid adjustment of the rotating magnetic field and the constant electric field, and the continuous adjustment of the intensity, and ensures the synchronous movement of the electric and magnetic fields with the welding laser beam. And other laser process parameters, thereby improving the quality of laser welding seam formation.

Description

technical field [0001] The invention belongs to the technical field of laser processing, and relates to a device and method for synchronously assisted laser welding by a rotating electric-magnetic field, specifically a method for synchronously assisting laser welding based on a rotating magnetic field and a constant electric field of a permanent magnet and its welding device. Background technique [0002] Laser welding is a welding method that uses continuous or pulsed laser beams as a heat source to melt and connect workpieces. It has the characteristics of fast welding speed, large aspect ratio, and small deformation. With the rapid development of industrial production and the continuous development of new materials, the performance requirements of welded structures are getting higher and higher. Laser welding has been widely used for its advantages of high energy density, deep penetration, high precision, and strong adaptability. [0003] The electro-magnetic field assist...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B23K26/24B23K31/12B23K26/12B23K37/04B23K26/70
CPCB23K26/123B23K26/21B23K26/702
Inventor 石岩闫胜鸿刘佳李云峰
Owner CHANGCHUN UNIV OF SCI & TECH