Industrial Laser Welding Machines | High-Speed, Precision & ROI

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High-Efficiency Laser Cutter Welder with Dual Functions for Metal Fabrication

Our laser cutter welder combines cutting and welding functions in one machine, featuring the advanced technology of our PM3015 cutting machine and high-precision welding performance. It has excellent power and precision, ideal for large-format metal processing in construction and heavy machinery industries. With an annual production capacity of over 10,000 units, we ensure stable supply and provide quality assurance for global customers.
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Advantages of the product

Precision Motion Platforms and Robotic Integration for Complex 3D Contours and Automated Production Lines

Designed for smart manufacturing ecosystems, these workstations utilize high-precision linear motor stages or articulated robotic arms achieving positioning accuracy within ±0.02 mm. This precision is essential for intricate geometries found in aerospace brackets, EV busbars, and stamped assemblies. Open-architecture software supports standard industrial protocols for seamless integration with upstream press brakes and downstream conveyors. For high-mix production, flexible teach pendant programming handles complex 3D paths manually, while fully automated cycle starts suit high-volume scenarios. This versatility allows the same core laser welding technology to be deployed for prototyping during the day and full-scale automated production overnight, maximizing return on capital equipment investment across diverse manufacturing tasks.

Superior Beam Delivery with Galvanometer Scanner Options for Remote Welding and High Throughput Applications

Optional 2D and 3D galvanometer scanning heads utilize rapidly tilting mirrors to position the beam, eliminating physical head travel and reducing idle time between weld spots by up to 80%. This remote welding technique executes hundreds of stitch welds per minute on large components like automotive seat frames or heat exchanger plates. The scan field covers up to 200mm x 200mm while software compensates for optical path variations to maintain consistent spot size and focus depth. This technology is particularly effective for welding copper hairpins in electric motor stators, where minimal spatter prevents electrical shorts. High throughput capability directly enhances manufacturing return on investment under tight takt time constraints, making it ideal for high-volume production environments.

Related products

Tianchen Laser's laser cutter welder is an integrated industrial equipment that integrates laser cutting and laser welding functions, designed for metal processing enterprises with diversified processing needs, realizing the dual functions of cutting and welding in one equipment, which is efficient, economical and practical, and is an ideal choice for enterprises to optimize production processes and reduce equipment costs. The equipment adopts advanced fiber laser technology and high-precision numerical control system, with stable performance and high processing accuracy. The laser cutting module can realize high-speed and high-precision cutting of various metal sheets, with smooth cutting surface, no burrs, and high dimensional accuracy, which can meet the blanking and forming processing needs of various metal parts; the laser welding module can realize high-quality welding of metal workpieces, with small heat input, less workpiece deformation, firm and beautiful weld seam, and good retention of material properties, which is suitable for welding various metal materials and complex structural parts. The laser cutter welder is flexible in operation and can quickly switch between cutting and welding modes according to production needs, without frequent replacement of equipment or fixtures, which greatly improves production efficiency. It is widely used in sheet metal processing, hardware production, auto parts manufacturing, kitchenware processing, architectural metal parts processing and other fields. For example, in small and medium-sized sheet metal processing plants, this equipment can complete the cutting of sheet metal blanks and the welding of formed parts, reducing the circulation of workpieces and improving the overall processing efficiency; in the hardware manufacturing industry, it integrates the cutting of hardware blanks and the welding of finished parts, simplifying the production process and improving product quality. Relying on the company's 29 years of experience in the laser equipment industry, strong R&D strength and perfect quality management system, we continuously optimize the performance and structure of the laser cutter welder, ensure the stability and reliability of the equipment in dual-function operation, and provide customers with personalized customized solutions and comprehensive after-sales service to meet the diversified integrated processing needs of different customers.

Common problem

What is the typical maintenance schedule for an industrial laser welding machine?

Routine maintenance primarily involves cleaning the protective glass window on the welding head and inspecting the chiller water level and conductivity weekly. No lamp or crystal replacement is needed with fiber lasers. The cooling system filter requires replacement every 6 months. A major service interval for air filters and optics alignment check is recommended every 12 to 18 months or 8,000 operating hours. The system includes alerts for preventive maintenance tasks.
Yes, the laser welding source is designed for seamless integration with 6-axis industrial robots via standard communication protocols. The lightweight fiber optic cable routes easily through the robot dress pack. This configuration allows for complex 3D path welding on large stamped automotive parts, furniture frames, and kitchen equipment. Robotic integration provides flexibility for part changeover and maximizes the utilization of the laser power source.
A standard 1500W handheld laser welding machine can effectively weld stainless steel up to 6mm and aluminum up to 4mm in a single pass with filler wire. For deeper penetration, a 3000W machine can achieve full penetration on 10mm stainless steel. With multi-pass techniques and wire feed, thicker sections can be built up. The limitation is not power but the practical handling of heavy industrial joints.

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Customer Reviews

Thomas Clark
Significant Reduction in Argon Gas Consumption and Welding Fume

Compared to our old MIG robots, the laser uses a much finer stream of shielding gas and produces about 80% less smoke and spatter. Our air filtration system isn't working nearly as hard, and the welders report much better air quality in the bay. The energy savings on the chiller versus a large transformer welder are also noticeable on the monthly utility bill.

Daniel White
Reliable Performance in a High-Temperature Manufacturing Environment

Our facility lacks climate control and gets very hot in summer. This machine's chiller has kept the laser source within spec even on 100-degree days. We haven't experienced any thermal shutdowns or drift in weld focus. The sealed optics have also kept out the fine metal dust that plagues the rest of our plant. Solid engineering.

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Durable Construction and Rigorous Manufacturing Standards Originating from a 1995-Established Intelligent Equipment Base

Durable Construction and Rigorous Manufacturing Standards Originating from a 1995-Established Intelligent Equipment Base

The structural integrity reflects decades of engineering refinement with gantry and machine beds constructed from heavy-duty cast iron or stress-relieved welded steel. This provides a thermally stable, vibration-dampened foundation essential for maintaining micron-level focus during continuous multi-shift operation. Stringent statistical process control during assembly ensures component quality at the intelligent manufacturing base. Critical optics reside in sealed, pressurized enclosures protecting against industrial dust, moisture, and fumes. The oversized industrial cooling system features redundant safeguards to prevent thermal drift during extended shifts. This robust hardware engineering withstands demanding production environments and is deployed in over 100 countries globally, ensuring long-term reliability and stable performance under rigorous factory conditions.
Comprehensive Global Service Network and Application Support Spanning Over 100 Countries

Comprehensive Global Service Network and Application Support Spanning Over 100 Countries

With a presence in over 100 countries, the support infrastructure is extensive and responsive. Application engineers conduct feasibility studies using customer-provided CAD models and material samples to recommend optimal welding strategies prior to purchase. After installation, remote machine access enables immediate diagnostic review and parameter adjustments without travel delays. The global logistics network ensures expedited delivery of proprietary consumables, minimizing Mean Time To Repair. Localized training programs certify operator proficiency in safety protocols and advanced programming functions. This customer-centered approach mitigates risks associated with implementing high-tech capital equipment and ensures the laser welding machine maintains peak productivity throughout its operational lifecycle, supported by a reliable international network.
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