Xiaoya Laser Hybrid Welding Robot

Product Details
Customization: Available
Accuracy: Flexible
Control Mode: Continuous Path Control
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Year of Establishment
2005-08-16
Number of Employees
291
  • Xiaoya Laser Hybrid Welding Robot
  • Xiaoya Laser Hybrid Welding Robot
  • Xiaoya Laser Hybrid Welding Robot
  • Xiaoya Laser Hybrid Welding Robot
  • Xiaoya Laser Hybrid Welding Robot
  • Xiaoya Laser Hybrid Welding Robot
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Basic Info.

Model NO.
LHWR
Drive Mode
Electric
Type
Laser Welding Robot
Welding Speed
Flexible
Transport Package
Steel Pallet
Trademark
xiaoya
Origin
Jinan

Product Description

Xiaoya Laser Hybrid Welding RobotMain Content and Optimized Description of Laser Hybrid Welding

I. Overview of Laser Hybrid Welding

  • Definition: Laser hybrid welding combines laser and arc welding technologies, where the laser provides high-energy output, and arc welding offers metal connectivity, enhancing the flexibility of the welding process.

II. Technical Characteristics of Laser Hybrid Welding

  • Wide Application Range: Suitable for various metallic materials such as high-strength steel and aluminum alloys.
  • Low Heat Input: Lower heat input per unit length results in less deformation and a narrower heat-affected zone.
  • High Welding Efficiency: Offers higher welding speeds and productivity, reducing component costs.
  • Deep Penetration: Achieves deeper penetration, suitable for thicker plate materials.
  • High Weld Quality: The weld and heat-affected zone have finer structures, with smaller stresses and strains, improving the overall mechanical properties of the weld joint.

III. Comparison between Laser Hybrid Welding and Arc Welding

Welding Characteristic Arc Welding Score (0-5) Laser Hybrid Welding Score (0-5)
Efficiency 3 5
Application in Thick Plate Deep Penetration Welding 3 5
Application in High-Strength Steel Welding 3 5
Application in Aluminum Welding 3 5
Accessibility 4 5
Heat Input 3 5
  • Optimized Description: Laser hybrid welding outperforms arc welding in efficiency, application in thick plate deep penetration welding, high-strength steel welding, aluminum welding, heat input, and has high accessibility.

IV. Comparison between Laser Hybrid Welding and Cold Metal Transfer (CMT) Welding

Welding Characteristic CMT Welding Score (0-5) Laser Hybrid Welding Score (0-5)
Efficiency 2 4
Application in Thick Plate Deep Penetration Welding 1 5
Application in High-Strength Steel Welding 5 5
Application in Aluminum Welding 5 5
Accessibility 1 5
Heat Input 5 5
  • Optimized Description: Laser hybrid welding surpasses CMT welding in efficiency, application in thick plate deep penetration welding, and accessibility. It is also comparable or superior to CMT welding in high-strength steel welding, aluminum welding, and heat input.

V. Specific Advantages of Laser Hybrid Welding

  • Beautiful Weld Formation: Offers better weld formation than laser welding and conventional MAG welding.
  • High Arc Stability: Maintains stability even at low currents and features enhanced arc stability due to the "dual conduction mechanism".
  • Single-Sided Welding with Double-Sided Formation: Easily achieves stable and reliable single-sided welding with double-sided formation, particularly suitable for high-strength steel welding.

VI. Case Studies

  • Aluminum Alloy Weld Surface Formation: Demonstrates the advantage of laser hybrid welding in improving the appearance of weld surfaces compared to pulse MIG welding.
  • High-Strength Steel Weld Back Formation: Showcases the ability of laser hybrid welding to achieve single-sided welding with double-sided formation in unequal thickness high-strength steel butt welds and T-joints, which is difficult to achieve with conventional MAG welding.
Here's the English version of the laser hybrid welding comparison content in a structured technical report format:

 

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