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Expert in additive remanufacturing and surface modification for high-value components.
Scrapping high-value core components is no longer the end of the road.
Precision laser cladding restores performance to original standards—or even exceeds them.
With repair costs only 20%-30% of new part procurement, you achieve a direct 70% cost reduction.

Scrapping high-value core components is no longer the end of the road. Precision laser cladding restores performance to original standards
—or even exceeds them. With repair costs only 20%-30% of new part procurement, you achieve a direct 70% cost reduction.
This is far more than a simple restoration. It is a comprehensive performance upgrade. By cladding high-performance alloy materials,
repaired components gain superior wear resistance, corrosion resistance,
and high-temperature tolerance that exceeds new products—effectively doubling their service life.

This is far more than a simple restoration. It is a comprehensive performance upgrade. By cladding high-performance alloy materials, repaired components gain superior wear resistance, corrosion resistance, and high-temperature tolerance that exceeds new products—effectively doubling their service life.
Revolutionary programming-free operation. Workpieces can be placed randomly as the system performs automatic visual scanning and identification.
Completely eliminate technical dependence on professional technicians and expensive software.

Revolutionary programming-free operation. Workpieces can be placed randomly as the system performs automatic visual scanning and identification.
Completely eliminate technical dependence on professional technicians and expensive software.
Humanoid robotic arm movement effortlessly achieves multi-angle,
all-around cladding on complex 3D curves and irregularly shaped components without dead zones.

Humanoid robotic arm movement effortlessly achieves multi-angle, all-around cladding on complex 3D curves and irregularly shaped components without dead zones.
Application areas
Metal manufacturing and processing, transportation equipment, machinery and electrical equipment, new energy and environmental protection, consumer electronics and precision instruments

| Laser Cladding Robot - Small Mobile Type | |||||
| Parameter&configration List ●standard configuration, ○optional configuration, ×No configuration required |
|||||
| Item | Sub-item | Powder Feeding Cladding 3000W | Wire Feeding Cladding 6000W | ||
| Basic Information | Processing Area | 2000*2000 | 2000*2000 | ||
| Dimensions | 2500*900*2300 | 2500*1000*2200 | |||
| Machine Power | Approx.40kW | Approx.40kW | |||
| Machine Weight | 1.6T | 2T | |||
| Accuracy Parameters | Positioning Accuracy | ±0.1mm | ±0.1mm | ||
| Repeatability Positioning Accuracy | ±0.05mm | ±0.05mm | |||
| Cladding Accuracy | ±0.05mm | ±0.05mm | |||
| Cladding Speed | 10-25mm/s | 15-35mm/s | |||
| Cladding Thickness (Single Layer) | 0.3-2MM | 0.6-2.5MM | |||
| Mechanical Configuration | Bed Structure | Sheet Metal Welding | Sheet Metal Welding | ||
| Crawler Travel Mechanism | ● | ● | |||
| Robot Arm | ●KUKA | ●KUKA | |||
| ○Domestic Brand | ○Domestic Brand | ||||
| Hand Wheel | ●USB Wireless Electronic Handwheel 6-axis | ●USB Wireless Electronic Handwheel 6-axis | |||
| Powder/Wire Feeding | ●Powder Feeder | ●Wire Feeder | |||
| Positioner | ○ | ○ | |||
| Electrical Configuration | Servo Motor and Drive | OMS06M401N2LC2/ODSAN6A401GB | ODSAN6A401GB | ||
| Reducer | PLF060-L3-280-S2-P2 | ||||
| Industrial Computer | CustomizedTFZY-EH11-D340 | CustomizedPAS-7000 | |||
| Circuit Breaker | Chint | Chint | |||
| Solenoid Valve | ● | ● | |||
| ○Air Pressure Alarm | ○Air Pressure Alarm | ||||
| Digital IO | ●EC4-1616B/EC4-1612J/EC4-A40V | ●EC4-1616B/EC4-1612J/EC4-A40V | |||
| System | DynaHybrid-R Intelligent Laser-Arc Hybrid Welding Control System | DynaHybrid-R Intelligent Laser-Arc Hybrid Welding Control System | |||
| Optical Configuration | Laser | ●XT LASER | ●XT LASER | ||
| Cladding Head | Type I Coaxial Wire/Powder Feeding Laser Head | Type I Coaxial Wire/Powder Feeding Laser HeadTL-WP-F100-F200-OPT-I | |||
| Intelligent Configuration | Visual Recognition | ●Structured Light 3D Camera | ●Structured Light 3D Camera | ||
| Safety Configuration | Laser Abnormal alarm | ● | ● | ||
| Chiller Abnormality Alarm | ● | ● | |||
| Voltage Abnormality Protection | ● | ● | |||
| Laser Safety Signs | ● | ● | |||
| Free Accessories | Protective Lens | ●3pcs(Excluding those in the gun) | ●3pcs(Excluding those in the gun) | ||
| Protective Goggles | ●1set | ●1set | |||
| Customer Wrench | ● | ● | |||
| Optional Configuration | Transformer | ○ | ○ | ||
| Voltage Stabilizer | ○ | ○ | |||
| Dust Removal Device | ○ | ○ | |||
| Guardrail | ○ | ○ | |||
| Water Cooling Device | Chiller | ●XT LASER | ●XT LASER | ||
For more questions, please contact us.
Fiber laser cutting machines can cut most metal materials, including stainless steel, carbon steel, aluminum, copper, alloy steel, galvanized sheet, titanium, etc. They are widely used in sheet metal processing, kitchen utensils, aerospace, metal cabinets, automotive parts, construction and other industries.
Laser cutting technology has significant comprehensive advantages over traditional cutting methods (such as flame cutting, plasma cutting, waterjet cutting).
High precision laser cutting, narrow kerf width, smooth and burr-free, small heat-affected zone, no need for secondary grinding and polishing.
Non-contact processing, no mechanical stress, avoiding tool wear or material deformation.
Fiber laser cutting machines require professional laser cutting control software and CAM software to process design files and generate cutting paths, such as LightBurn, AutoCA, etc., and are compatible with DXF, SVG, AI (Adobe Illustrator), EPS, DWG, PDF, PLT, etc.
The laser power of the laser cutter depends on the cutting material and thickness. If you don’t know how to choose the right power for your device, please contact us.
Clean or replace the optics (focusing mirror, reflector) and nozzle regularly to avoid contamination affecting the cutting quality.
Check the operation status of the cooling system (water-cooled or air-cooled) to ensure that the water temperature and flow rate are normal to prevent the laser from overheating.
Clean the debris of the guide rail, screw and other transmission parts and lubricate them regularly to ensure the precision of movement; check the filtering device of the dust removal system and clean the soot residue in time.
XT LASER’s sheet metal laser cutting machine is equipped with a visual operation interface and a detailed operation manual, so even if you are a novice, you can quickly get started. If you are a beginner, it is recommended to read the safety guide before use, or contact our professional technicians online.
The lead time is usually 4 to 6 weeks, depending on the type of equipment and the specific needs of the customer. We will provide a detailed delivery schedule at the time of order confirmation and maintain communication during production and transportation to ensure on-time delivery.
Phone:+86 13589060756
Submit your information, and an account manager will contact you within 24 hours.
