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

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2-in-1 Laser Welder Cutter with High Precision for Dual Metal Processing

Our laser welder cutter integrates welding and cutting functions, combining advanced laser technology with efficient processing mechanisms. It features high precision and productivity, with the FB series' bevel cutting accuracy and stable welding performance. The machine has a robust build, suitable for large-scale industrial metal processing in automotive manufacturing, construction machinery and heavy machinery industries, with quality assurance and fast delivery.
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Advantages of the product

Integrated Intelligent Control Systems with Pre-Programmed Weld Libraries for Simplified Operation and Traceability

The equipment includes a state-of-the-art CNC controller with an intuitive HMI that minimizes operator training time. A comprehensive library of pre-optimized parameters for various joint configurations and material thicknesses enables rapid job setup without expert metallurgical knowledge. Real-time power feedback maintains weld consistency despite environmental or material surface variations. Integrated traceability logs key process metrics for ISO compliance and quality assurance reporting. Remote diagnostic capabilities allow technical support to troubleshoot and update software without on-site visits, maximizing production uptime. This intelligent architecture ensures that complex laser welding operations are accessible to general fabrication staff while delivering repeatable, high-quality results suitable for demanding industrial applications.

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.

Related products

Tianchen Laser's laser welder cutter is an integrated equipment that combines laser welding and laser cutting functions, which realizes the dual-purpose integration of welding and cutting in one equipment, effectively saving equipment procurement costs, production space and operation time for customers, and is an ideal processing equipment for metal processing enterprises with diversified processing needs. This equipment is based on advanced fiber laser technology and precise numerical control system, which can flexibly switch between welding mode and cutting mode according to processing requirements, with fast conversion speed and high operation efficiency, meeting the integrated processing needs of metal sheet cutting, parts forming, welding and forming in one stop. The laser cutting function of the equipment has the characteristics of high cutting accuracy, smooth cutting surface, no burrs, and is suitable for cutting various metal materials such as carbon steel, stainless steel, aluminum alloy, copper alloy, etc., covering thin plate to medium thick plate processing; the laser welding function has the advantages of small heat deformation, firm weld seam, beautiful appearance, and can realize high-quality welding of various metal parts, avoiding the problems of poor welding quality and large deformation caused by traditional welding methods. The laser welder cutter is widely used in sheet metal processing, auto parts manufacturing, hardware production, kitchenware production, architectural decoration parts processing and other industries. In the sheet metal processing industry, for example, enterprises can use this equipment to complete the cutting of sheet metal blanks and the welding of formed parts at one time, reducing the circulation of workpieces between multiple equipment, improving production efficiency and processing accuracy; in the auto parts industry, it can realize the cutting and welding of small and medium-sized auto parts, adapting to the diversified and precise processing needs of auto parts; in the kitchenware industry, it integrates the cutting of stainless steel sheets and the welding of kitchenware products, simplifying the production process and improving product quality. Relying on the company's 29 years of experience in the laser equipment industry, intelligent manufacturing base and professional R&D team, we continuously optimize the structural design and functional performance of the laser welder cutter, ensure the stability and reliability of the equipment in dual-function operation, and provide customers with personalized customized solutions according to their processing materials, thickness, accuracy requirements and production scale to meet the diversified integrated processing needs of different customers.

Common problem

How does fiber laser welding compare to traditional TIG or MIG welding?

Laser welding offers significantly higher speed, up to 10 meters per minute on thin materials, versus inches per minute with TIG. The heat-affected zone (HAZ) is 60-80% smaller, resulting in minimal part distortion and eliminating the need for post-weld straightening. Laser welding often produces a clean, narrow seam that requires no grinding or filler metal, reducing consumable costs and labor. However, it requires tighter part fit-up tolerances than MIG welding.
A Class 4 laser requires a fully enclosed light-tight safety enclosure or a dedicated laser safety room with interlocked doors. Operators must wear safety glasses rated for the specific laser wavelength. The work area must have non-reflective surfaces to prevent stray beam reflection. Fume extraction is mandatory to remove metal vapor and particulates from the breathing zone. The machine control system will shut down the laser immediately if the enclosure door is opened during operation.
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

Michael O'Reilly
Robotic Laser Welding Cell Solved Our Copper Busbar Porosity Challenges

Welding thick copper busbars for switchgear was a nightmare with resistance welding. The laser machine with wobble function eliminated 99% of the porosity issues we had previously. The integration with our Fanuc robot was straightforward and the open communication protocol made I/O mapping simple. Our electrical conductivity test results are now best in class.

Noah
Compact Footprint but Heavy-Duty Industrial Construction

We replaced a large automated TIG setup with a 3-axis laser workstation. It takes up half the floor space. The cast machine base is incredibly rigid, which we noticed immediately reduces vibration during high-speed stitch welding. The enclosure quality is top-tier, very robust safety glass and thick metal panels. It is built to survive a busy factory floor environment.

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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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