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Laser Solutions for Construction & Infrastructure

Heavy-duty laser power for structural steel and on-site fabrication.
Key Applications

Building the Future

From skyscrapers to heavy machinery, laser precision leads the way.

Heavy-Duty Beam Cutting

Lasers are used to cut I-beams, channel steel, and square tubing for building frameworks. They can precisely cut bolt holes and complex joints, greatly simplifying on-site assembly.

Construction Equipment Parts

Laser cutting is used to cut thick, high-strength, wear-resistant steel plates for excavator buckets and crane booms. Laser cutting minimizes the heat-affected zone, preserving the material's hardness.
Why Laser

Why Laser for Construction?

Power meets portability..

Thick Plate Capability

Cut up to 50mm carbon steel with superior edge quality compared to plasma.

On-Site Mobility

Handheld units can be transported to the job site for repairs and installation.

Structural Integrity

Deep penetration welds ensure maximum strength for load-bearing structures.

Cost Efficiency

Eliminate secondary grinding and reduce consumable costs significantly.

Building Stronger, Faster

Can lasers cut thick structural steel plates?

Yes. Our high-power fiber lasers (up to 30kW) can cut through carbon steel plates up to 50mm thick with clean, vertical edges, replacing plasma and oxy-fuel in many applications.

How does the cut quality compare to plasma?
Laser cutting produces a much narrower kerf and a smoother finish with virtually no dross. This eliminates the need for secondary grinding before welding, saving hours of labor per ton.
Can it handle I-beams and tubes?

Absolutely. Our tube laser systems are equipped with specialized chucks to clamp and cut heavy profiles like H-beams, channels, and large diameter pipes used in structural frameworks.

Is there a solution for on-site welding repairs?

Our EC-Series handheld welders are compact and mobile. They can be easily transported to construction sites for welding handrails, repairing heavy equipment buckets, or joining structural elements in place.

Can I remove rust from steel beams before painting?
Yes. The same handheld unit can be switched to cleaning mode to strip rust, oxide scale, and old paint from steel surfaces, preparing them perfectly for protective coatings.
 
Is the handheld welder durable enough for field use?

Designed for industrial environments, our units feature ruggedized cases, heavy-duty fiber cables, and active cooling systems to withstand the dust and heat of construction sites.

How much faster is laser welding than stick welding?

For long, straight seams on thinner structural components (like HVAC ducts or cladding), laser welding can be 4-10 times faster than SMAW (stick) or MIG welding.

Does it reduce material waste?
Laser nesting software optimizes the layout of parts on large plates, significantly improving material yield compared to shearing or manual torch cutting.
Is training difficult for existing welders?

While the technology is advanced, the operation is simplified. Most experienced welders can master the handheld laser system in a day, finding it physically easier than traditional methods.

Recommended Equipment

BAJA-EVO

Why it fits:
  • Precision: +/- 0.03mm positioning accuracy ensures that every part meets strict automotive tolerances.
  • Power: Available up to 12kW, capable of cutting thick chassis plates and suspension components with ease.
  • Integration: Open architecture allows for seamless integration with automated loading/unloading systems and robotic arms.
Specs:
  • Power: 1500W-12000W
  • Acceleration: 1.5G 
  • Application: Chassis, Body Panels, Brackets
Customer Case Study

Parking lot Pillars in CA

Challenge :
    The client needed to manufacture a large volume of metal pillars for a major parking structure project in California. The challenge was to achieve high production efficiency while maintaining rigorous safety standards and ensuring strong, defect-free welds on complex metal designs, all under tight deadlines.
 
Solution :
    They integrated our advanced welding machines (referring to EF-Hybrid or EC Series) into their manufacturing line. The key was the machine’s ability to provide precise control over heat input. This feature allowed the operators to execute clean, strong welds on the thick metal pillars, even in areas with complex joint geometries, minimizing the heat-affected zone.
 
Customer Quote :
    “The precise control over heat input provided by your machines allowed for clean, strong welds on the metal pillars, accelerating our production timelines and ensuring we met rigorous safety standards. We reported fewer defects and a reduction in material waste, resulting in both cost savings and enhanced product reliability.”
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