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RAYMAX Fiber Laser Cutter – Autofocus Cutting Head & Slag-Free Cutting for 0.5mm Thin Sheets

RAYMAX fiber laser cutter features an autofocus cutting head that adjusts focal point position based on sheet thickness and material, maintaining optimal kerf width and eliminating dross on thin sheets down to 0.5mm stainless steel. The cutting head includes a capacitive height sensor that maintains 0.3mm standoff, preventing collisions with warped plates. With rapid traverse speed of 100 m/min and acceleration of 1.0G, this fiber laser cutter excels at intricate shapes like electronic cooling vents, medical instrument parts, and decorative grilles. RAYMAX offers a free cutting test on customer-supplied samples to demonstrate cut quality and speed before purchase. The machine is compatible with CAD/CAM software for seamless workflow integration.
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Why choose us?

Cutting Accuracy of ±0.03mm with ±0.05mm Repeatability

RAYMAX fiber laser cutter delivers positioning accuracy of ±0.03mm/m and repeated positioning accuracy of ±0.02mm, making it the premier choice for automotive, aviation, railway, and ship industries. Our fiber laser cutting technology merges CNC control with fiber-optic laser tech, achieving cutting accuracy of ±0.05mm and edge roughness as low as Ra 1.6μm. The 1064nm wavelength laser beam can be focused as narrow as 0.01mm, enabling clean cuts on complex shapes without secondary finishing. Developed through university partnerships and our 60% technical staff, this technology is ideal for intricate designs like aviation wing brackets and automotive fuel injectors. Trusted by 4000+ customers, RAYMAX fiber laser cutter ensures consistent precision for global clients.

High-Speed Cutting with 120m/min Rapid Travel

RAYMAX fiber laser cutter achieves rapid traverse speeds of up to 120m/min with acceleration of 1.0G, dramatically reducing cycle times for high-volume production. Our open-type fiber laser cutter integrates plate and tube cutting in one machine, featuring fast cutting speed, small cutting seam, minimal deformation, and a smooth, flat surface that requires no post-processing. The machine is equipped with an automatic focal length tracking and adjustment system that easily handles twisted or deformed materials, with cutting thickness up to 50mm for most metals. A 3000W model cuts 10mm carbon steel at 1.2m/min, delivering 3x faster speeds than CO₂ lasers with 40% less power consumption. Widely used in sheet metal processing, electrical cabinet production, and kitchenware manufacturing, our fiber laser cutter boosts productivity while lowering energy costs.

Automatic Focus Control for Optimal Cut Quality

RAYMAX fiber laser cutter includes a motorized focus control that automatically adjusts the focal point position based on material thickness, moving the focus from +2mm (above surface) for thin sheet to -5mm (below surface) for thick plate. This optimizes cut quality across the entire thickness range (0.5–30mm) without manual intervention. The capacitive height sensor maintains a constant 0.3-0.5mm standoff from the metal surface, preventing collisions with warped plates. The autofocus cutting head eliminates manual focus adjustments, reducing setup time and improving cut consistency for job shops that handle diverse materials. RAYMAX provides a free cutting test on customer-supplied samples to demonstrate cut quality and speed before purchase. The machine is compatible with CAD/CAM software for seamless workflow integration.

Related products

High-power fiber laser cutters in the 12kW to 60kW range represent the cutting edge of metal processing technology, enabling fabricators to cut thick plates in a single pass with exceptional edge quality and productivity. High-power fiber laser cutters achieve full cutting capacity up to 60mm to 100mm total metal plate thickness depending on material type and assist gas selection, with 50mm carbon steel, 40mm stainless steel, and 30mm aluminum processed cleanly and efficiently with 12kW to 20kW systems. For shipbuilding applications requiring cutting of 25mm to 50mm steel hull plates, high-power fiber laser cutters complete cuts with minimal heat-affected zone of 0.2mm to 0.5mm and reduced distortion compared to plasma cutting, where heat-affected zones of 3mm to 5mm cause plate warping requiring expensive straightening operations before assembly. The exchange platform on high-power fiber laser cutters has high load-bearing capacity and can accommodate heavy steel plates, with two platforms allowing one to be loaded while the other is cutting, enabling continuous operation for high-volume production environments processing 100 to 200 tons of material per week. High-power fiber laser cutters feature reinforced machine frames constructed from high-grade steel, heat-treated to relieve welding stress and resist deformation under the thermal loads associated with thick plate cutting, ensuring long-term stability and positioning accuracy of ±0.03mm per meter. Adaptive gas control optimizes cutting performance for thick materials, with oxygen used for carbon steel to accelerate cutting through exothermic reaction, delivering cutting speeds 2 to 3 times faster than nitrogen on thick sections while producing a slightly oxidized edge that is acceptable for most structural applications. For stainless steel thick plate cutting, nitrogen assist gas is used to maintain a bright, oxidation-free edge, with cutting speeds of 18 to 22 meters per minute on 8mm thickness achievable with 30kW systems. For petrochemical industry applications requiring cutting of 20mm to 30mm thick stainless steel pressure vessel components, high-power fiber laser cutters produce edges that require minimal post-cut preparation for welding, eliminating the need for secondary edge grinding operations. The CNC system on high-power fiber laser cutters includes real-time power monitoring and adjustment, automatically compensating for variations in plate thickness and material properties to maintain consistent cut quality across long production runs. A 20kW fiber laser system has the ability to cut through 50mm steel plates while producing excellent cutting results, with a case study documenting a company that reduced cutting time for 50mm carbon steel plates from 6 hours with oxy-fuel to 20 minutes with a high-power fiber laser cutter. For power generation boiler tube sheets where multiple holes must be cut in thick plates up to 100mm, high-power fiber laser cutters with piercing optimization algorithms achieve clean hole entry and exit, maintaining positional accuracy of ±0.03mm across the entire cutting area. Contact our high-power laser cutting specialists to discuss fiber laser cutter configurations optimized for your specific thick plate processing requirements, from 12kW entry-level systems to 60kW ultra-high-power production systems.

Frequently Asked Questions

How does a CNC press brake improve bending precision?

A CNC press brake achieves bending angle tolerances of ±0.1° and repeat positioning accuracy up to ±0.01mm through CNC automatic control, CAD drawing import, automatic angle compensation, and deflection compensation features.
A fiber laser cutter uses a fiber-optic-delivered laser beam (1064nm wavelength) focused into a 0.1mm spot to melt and vaporize metal materials, creating clean, accurate cuts for automotive, aviation, and shipbuilding industries.
A servo press brake saves 30% to 60% energy compared to traditional hydraulic press brakes, thanks to servo motors and ball screws/servo pump systems that use power only during the bending process rather than continuously idling.
A swing beam shearing machine uses a rotary blade motion and is suited for thinner sheets and high-speed production, while a guillotine shearing machine features vertical blade movement, offering higher precision (adjustable cutting angle 0.5~2°) for thick plates and heavy-duty applications.

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Customer Reviews

William Chen

RAYMAX fiber laser cutter consumes 40% less power than our old CO₂ laser while cutting three times faster. The 3kW model cuts 10mm carbon steel at 1.2m/min with excellent edge quality. The 1070nm wavelength laser is highly absorbed by reflective materials like aluminum and brass without back-reflection issues. The automatic focus adjustment maintains consistent cut quality across different thicknesses. The machine paid for itself in energy savings alone within 18 months. The cutting area of 1500mm x 3000mm accommodates our typical sheet sizes. The nesting software reduced our material waste by 15%. RAYMAX provided a free cutting test on our sample parts before we purchased, which demonstrated the capabilities clearly. This is the best investment we have made in cutting equipment.

Paul Chen

The motorized focus control on RAYMAX fiber laser cutter automatically adjusts focal point position based on material thickness, moving the focus from +2mm above surface for thin sheet to -5mm below surface for thick plate. This feature eliminated manual focus adjustments, reducing setup time and improving cut consistency for our diverse materials. The capacitive height sensor maintains constant standoff from the metal surface, preventing collisions with warped plates. The autofocus cutting head works seamlessly with our CAD/CAM workflow. We process materials from 0.8mm to 25mm thickness daily. The machine's ability to switch between thicknesses without operator intervention has increased our productivity. RAYMAX provided a cutting test on our sample parts before purchase, confirming the autofocus capability. This machine has simplified our operation considerably.

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Integrated Plate and Tube Cutting in One Machine

Integrated Plate and Tube Cutting in One Machine

RAYMAX fiber laser cutter integrates plate and tube cutting capabilities in one machine, featuring a focal length automatic tracking and adjustment system that handles twisted or deformed materials. With positioning accuracy of ±0.03mm/m and repeated positioning accuracy of ±0.02mm, this machine cuts most metal materials up to 50mm thickness. The CNC system with professional auxiliary control software makes operation simple and convenient. Imported servo motors and precision guide rails provide high cutting accuracy, stability, and long service life, suitable for sheet metal processing, automotive parts, kitchenware, and electronic components.