Explore our flagship systems engineered for precision sheet metal fabrication, tube cutting, and custom sheet profile bending.
Established in July 2004, our enterprise has continually pushed the boundaries of CNC metal thermal cutting, high-power fiber laser deployment, and intelligent mechanical integration. With a specialized 500 square meter research and administrative center and a state-of-the-art production base spanning over 32,000 square meters, we supply advanced solutions to major industrial hubs globally.
The industrial landscape for metal processing is experiencing a fundamental paradigm shift. Historically dominated by conventional mechanical shearing, stamping, and CO2 thermal technologies, modern fabrication lines have consolidated around CNC Fiber Laser Systems. This evolution is driven by several key global macro-trends:
Previously, a 4kW or 6kW laser source was the benchmark for heavy-industry plate processing. Today, top-tier factories utilize ultra-high-power fiber configurations scaling from 12kW up to 30kW. This evolution significantly increases processing speed while enabling high-quality nitrogen and air-assisted cutting of thick carbon steel, stainless steel, and highly reflective non-ferrous metals like copper and aluminum.
Modern production facilities cannot afford machine idle time. The market is shifting from standalone machines to integrated automated processing cells. By pairing premium exchange worktables with automated loading and unloading systems, manufacturers minimize material handling times, optimize safety protocols, and allow continuous 24/7 dark-factory operations.
"Industry 4.0 is not merely about connectivity; it is about absolute processing efficiency. A modern 30kW fiber laser system reduces energy consumption per millimeter cut by over 40% compared to legacy 6kW CO2 systems while increasing mechanical throughput by a factor of three."
Modern structural designs demand complex geometries, necessitating tube and profile processing alongside flat sheet metal fabrication. Multi-functional systems equipped with rotary chuck modules handle complex round, square, and H-profile tubes on a single structural frame, eliminating the need for dedicated secondary milling and drilling operations.
A visual walk-through of our research spaces, heavy assembly workshops, design studios, and staff training facilities.
Understanding what engineering teams and purchasing directors prioritize when sourcing OEM CNC laser and bending machinery.
Industrial operations require customized configurations. This includes custom structural frame sizing, integration of automated robotic loaders, special CNC controllers, and customized paint schemes to align with brand standards.
Exporting to European and North American markets requires strict compliance with international standards, including CE, FDA, and ISO 9001 certifications. These credentials guarantee workplace safety and machine durability.
Buying complex industrial machinery requires robust service agreements. Fast spare parts logistics, remote diagnostics, and on-site commissioning by field engineers are critical to preventing costly downtime.
Our technologies deliver high edge quality and processing consistency across a wide range of metals.
Our industrial laser cutting, sheet metal bending, and automatic deburring machines are deployed in high-precision and heavy manufacturing industries worldwide:
Processing aerospace-grade aluminum, titanium, and nickel alloys with strict tolerance thresholds.
High-speed processing of chassis structural parts, exhaust tubes, and internal sheet metal panels.
High-power cutting of thick steel plates for structural beams, agricultural equipment, and cranes.
Continuous punch-press-free nesting and bending of server enclosures, electrical panels, and metal kitchenware.
How we plan to drive technological innovation and support smart manufacturing over the next two decades.
Looking ahead, we aim to establish ourselves as a leading global supplier of industrial laser systems by 2040. Our engineering divisions are focusing on three main technological pillars:
Future CNC controllers will analyze thermal feedback from the cutting nozzle in real time. This capability allows the system to automatically adjust laser power output, gas flow rates, and feed speed to prevent dross formation and nozzle damage without manual intervention.
We are expanding beyond stand-alone machinery to offer complete automated cells. By integrating our fiber laser cutters, high-tonnage press brakes, and metal finishing machines with industrial robotic arms, we provide a unified production ecosystem managed by centralized software.
In response to rising global energy costs, our engineering department is optimizing the efficiency of our laser optical paths. Our goal is to reduce standby energy consumption by 50% and reduce auxiliary gas usage by employing advanced nozzle geometries.
Addressing common technical and logistical questions from production engineers and purchasing directors.
Fiber lasers transmit the laser beam through a flexible glass fiber optic cable, whereas CO2 lasers utilize a mixture of gases and a system of mirrors to direct the beam. Fiber lasers operate at a wavelength of approximately 1.06 micrometers, which is highly absorbed by metals. This enables fiber lasers to cut sheet metals up to three times faster than CO2 systems of equivalent power, while requiring significantly less maintenance and consuming less energy.
An automated exchange table system consists of two pallets. While the machine is cutting sheets on the first pallet inside the enclosure, the operator or automated loader can unload finished parts and load new sheet stock on the second pallet outside. This configuration eliminates downtime between cutting cycles, increasing overall system utilization by up to 95%.
Oxygen (O2) is typically used for cutting carbon steel because it creates an exothermic reaction that aids the cutting process, allowing for lower gas consumption. For stainless steel and aluminum, Nitrogen (N2) or compressed dry air is preferred. Nitrogen prevents oxidation of the cut edge, leaving a clean, paint-ready surface that does not require secondary grinding.
Our OEM field service team provides complete setup, optical alignment calibration, and integration with local safety standards. We also offer comprehensive on-site training for machine operators, covering CNC programming, nesting software optimization, preventive maintenance routines, and safety protocols.
Comprehensive engineering technical catalogs for our specialized production machinery lines.
Heavy duty single-axis system for rotary parts surface rebuilding and alloy cladding.
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High weight capacity positioner module for stable batch coating application.
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Advanced robotic arm integration for complex three-dimensional cladding toolpaths.
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Dual-purpose system for high-quality welding and post-weld surface cleaning.
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Specialized optical delivery head designed for interior tube derusting and oxide removal.
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High throughput external tube surface rust, paint, and scale cleaning system.
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Gantry-mounted high-power pulse cleaner for large-scale steel plates.
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Handheld, compact form factor designed for field service and spot cleaning.
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Mobile backpack configuration for cleaning structures at height or in tight spaces.
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Pulsed laser source designed for sensitive surface cleaning without thermal damage.
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Lightweight backpack design for mobile maintenance operations.
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Entry-level system designed for high weld seam strength in sheet metal shop environments.
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Fully enclosed cabinet configuration for maximum operator radiation protection.
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Stationary benchtop system for processing small parts and electronic enclosures.
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Flexible hand-guided gun system for high-quality joint execution at any angle.
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High-power welding system designed for deep penetration welds in thick plates.
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Automated manufacturing cell combining multi-axis robots with fiber laser technology.
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Dual-use design handling flat sheet nesting and rotary pipe cutting in one footprint.
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Fully enclosed gantry system with an automatic pallet exchange table for safe operation.
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Reliable double pallet design engineered for continuous, high-volume production runs.
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Advanced structural frame and precision components for high-accuracy processing.
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Enclosed housing combined with an automated material swap mechanism.
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Extra-large format bed configuration supporting fiber laser outputs up to 30kW.
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Electro-hydraulic proportional valves provide accurate positioning of the ram.
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Rigid torsion bar structure designed for high-tonnage sheet metal bending.
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All-electric servo-driven configuration designed for high energy efficiency and precision.
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Automated panel bending center for fast processing of thin sheet metal profiles.
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Compact all-electric model for precision processing of small sheet parts.
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Custom large-format press brake for processing long structural sections.
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High-rigidity guillotine beam shear for straight edge cutting of thick plates.
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Multi-functional system for punching, angle shearing, and profile cutting.
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Hydraulic swing beam system designed for consistent shearing of sheet metals.
Inquire Technical OptionsA second catalog selection covering automatic deburring, pipe profiling, CO2 cutting, and laser welding equipment.