Multi-functional Fiber Laser Welder Cutter Cleaner for Metal
The Multi-functional Fiber Laser Welder Cutter Cleaner is a versatile 3-in-1 handheld water-cooled fiber laser machine designed to combine three important metal-processing functions in one compact system: laser welding, laser cutting, and laser cleaning. This multifunctional configuration provides manufacturers, metal fabrication shops, repair businesses, maintenance departments, and industrial workshops with a flexible alternative to purchasing separate machines for different processes.
By integrating welding, cutting, and cleaning capabilities into one laser platform, the machine can support a wider range of production and maintenance tasks. The handheld design allows operators to work directly on different components, while the water-cooled configuration is designed to help manage heat during operation.
The exact laser power, cooling capacity, cutting capability, welding performance, cleaning parameters, and available accessories depend on the selected machine configuration.
It adopts the latest fiber laser, equipped with self-developed laser head and swing motor. The equipment is easy to use and has good cutting effect. The handheld laser cutting machine is suitable for cabinets, kitchens, stairs, elevators, shelves, ovens, stainless steel doors, window bars, distribution boxes, stainless steel materials and so on. Sleeving machine includes: body, motor, gearbox, pipe chuck, slat head, knife holder, feeding device, cooling system.
PRODUCT SPECIFICATIONS
|
1 |
Voltage (V) |
220V±10% AC 50Hz |
|
2 |
Operating ambient temperature (℃) |
10~40 |
|
3 |
Working environment humidity (%) |
<70 |
|
4 |
Applicable wavelength |
1064nm(±10nm) |
|
5 |
Maximum support air pressure |
15Bar |
|
6 |
Focus vertical adjustment range |
±10mm |
|
7 |
Protective Lens Specifications |
D30*T5 |
|
8 |
reflexes |
20x15.2xT1.6 |
3-In-1 Fiber Laser Welding, Cutting and Cleaning
The key feature of this equipment is its multifunctional 3-in-1 design.
The laser welding function is intended for joining suitable metal components and sheet metal parts. Concentrated laser energy can create a localized weld area with controlled heat input when the machine is correctly configured.
The laser cutting function provides a flexible method for cutting suitable metal sheets, plates, and components. Cutting performance depends on laser power, material type, thickness, assist gas, focus, nozzle configuration, and other process parameters.
The laser cleaning function uses controlled laser energy to remove suitable contaminants and unwanted surface layers. Depending on the application, it can be used for rust, oxidation, paint, oil, residue, and other surface contaminants.
Combining these three functions makes the system useful for businesses that need to perform different metal-processing operations without installing multiple dedicated machines.
Handheld Design for Flexible Metal Processing
The handheld configuration provides greater flexibility when processing large, irregular, assembled, or difficult-to-position workpieces.
Instead of moving every component to a dedicated fixed processing station, the operator can position the handheld laser head over the required welding, cutting, or cleaning area. This can be particularly useful for equipment repair, metal fabrication, custom manufacturing, machinery maintenance, stainless steel products, metal structures, cabinets, frames, and other industrial components.
The handheld format can also be practical for workshops that process different product sizes and frequently change between production tasks.
Water-Cooled Fiber Laser System
The water-cooled design helps manage heat generated by the laser system during operation. A suitable cooling system circulates coolant through designated components to help maintain appropriate operating conditions.
Effective thermal management is important for industrial laser equipment because excessive heat can affect operating stability and component service life. The required cooling capacity and operating parameters depend on the laser source, power level, duty cycle, ambient conditions, and machine configuration.
For continuous or extended production, buyers should select the cooling system according to the actual workload and manufacturer's specifications.
Suitable Metals
The multifunctional fiber laser machine can be configured for a variety of suitable metals, including:
Stainless Steel
Carbon Steel
Mild Steel
Galvanized Steel
Aluminum
Copper
Brass
Other Compatible Metal Alloys
Different metals have different thermal and optical characteristics, so welding, cutting, and cleaning parameters must be adjusted according to the material.
Stainless steel is commonly used in equipment, food-processing machinery, architectural products, kitchen equipment, and fabricated structures. Carbon and mild steel are widely used for machinery, frames, brackets, agricultural equipment, and structural components. Aluminum and copper applications require suitable process settings and machine configurations.
Efficient Handheld Laser Welding
Laser welding provides concentrated energy to the joint area. For suitable applications, this can help produce controlled welds while limiting unnecessary heat input to surrounding material.
The handheld welding function can be used for suitable butt joints, lap joints, corner joints, and other common fabrication configurations. Depending on the material and application, welding wire may or may not be required.
Welding results depend on material thickness, joint preparation, laser power, welding speed, shielding gas, wire selection, focal position, and operator technique. Production users should conduct sample testing before establishing final welding parameters.
Laser Cutting for Metal Fabrication
The cutting function extends the usefulness of the machine beyond welding and cleaning. It can be used for suitable sheet metal and metal component cutting applications.
Actual cutting thickness and speed should not be determined from the machine category alone. They depend on laser power, material type, thickness, assist gas, cutting head, nozzle, focal position, and desired edge quality.
For workshops that perform occasional cutting in addition to welding and cleaning, the integrated configuration can provide greater equipment flexibility.
Contactless Laser Cleaning
Laser cleaning is a non-contact surface treatment process. It uses controlled laser energy to remove suitable surface contaminants while allowing the operator to target specific areas.
Typical applications may include rust removal, oxidation removal, paint removal, oil and grease cleaning, surface preparation, and residue removal.
The cleaning effect depends on the contamination layer, substrate material, laser parameters, scanning pattern, and required surface finish. Operators should test the process on representative material before production use.
Applications Across Multiple Industries
A 3-in-1 fiber laser machine can support applications in many industries, including:
Sheet Metal Fabrication
Machinery Manufacturing
Automotive Components
Agricultural Machinery
Stainless Steel Products
Metal Furniture
Electrical Cabinets
Kitchen Equipment
Architectural Metalwork
Industrial Equipment Repair
Metal Structures
General Maintenance
The machine is especially useful for businesses that require different metal-processing operations within the same workshop.
One Machine for Multiple Production Tasks
The integrated configuration can simplify workflow for companies that perform several related processes.
For example, an operator may clean rust or oxidation from a metal surface before welding, use the laser welding function to join components, and then use the cutting function for suitable modifications or component preparation.
This approach can reduce the need to transfer workpieces between different machines and may help improve workshop flexibility. It is particularly suitable for custom fabrication, maintenance, repair, prototyping, and small-to-medium production environments.
Safety and Operating Requirements
Laser equipment requires proper operator training and appropriate safety procedures. Users should follow the machine manufacturer's instructions and applicable workplace laser-safety requirements.
Depending on the configuration, safety-oriented features may include emergency stops, protective systems, electrical protection, interlocks, protective eyewear, warning systems, and other safeguards.
Appropriate ventilation and fume extraction should also be considered because laser welding, cutting, and cleaning can generate fumes or airborne particles depending on the material and process.
Custom & OEM Configuration
Different applications require different laser configurations. We can support Custom & OEM requirements according to customer application needs.
Available configuration options may include laser source, laser power, handheld laser head, water chiller, control system, welding accessories, cutting nozzles, cleaning accessories, wire feeder, shielding gas system, and other application-specific components.
Before selecting the equipment, buyers should provide the main material types, typical thicknesses, welding requirements, cutting requirements, cleaning applications, expected operating hours, and production volume. These details help determine a suitable machine configuration.
Why Choose Us
3-In-1 Multifunctional Solution – Combines welding, cutting, and cleaning functions in one fiber laser platform.
Handheld Operation – Provides flexible processing for large, irregular, assembled, and difficult-to-position workpieces.
Water-Cooled Design – Provides thermal management for suitable industrial operating conditions.
Fiber Laser Technology – Uses fiber laser technology for versatile metal-processing applications.
Multiple Metal Applications – Suitable configurations can process stainless steel, carbon steel, mild steel, aluminum, copper, brass, and other compatible metals.
Flexible Industrial Applications – Suitable for fabrication, machinery, maintenance, repair, custom manufacturing, and metalworking.
Custom & OEM Support – Machine power, cooling, laser head, accessories, and other configurations can be matched to customer requirements.
B2B Export Service – We provide product consultation, application-based configuration support, technical communication, and customized machinery solutions for overseas buyers.
FAQs
1. What is a 3-in-1 fiber laser machine?
It is a multifunctional laser system designed to perform suitable welding, cutting, and cleaning operations using one machine platform.
2. What metals can the machine process?
Depending on the configuration, it can be used for stainless steel, carbon steel, mild steel, aluminum, copper, brass, and other compatible metals.
3. Why does the machine use water cooling?
Water cooling helps remove heat generated during laser operation and supports stable operating conditions.
4. Can it weld stainless steel?
Yes. Suitable stainless steel welding applications can be performed when the laser power, welding head, shielding gas, and process parameters are correctly selected.
5. Can it cut carbon steel?
Yes. The cutting function can process suitable carbon and mild steel materials. Actual thickness and speed depend on laser power and processing conditions.
6. Can it clean rust from metal?
Yes. The cleaning function can be configured for suitable rust and oxidation removal applications.
7. Can it remove paint?
It may be suitable for removing certain paint and coating layers. The process should be tested first because coating composition and substrate material affect cleaning results.
8. Is this machine fully automatic?
The handheld configuration is generally operator-controlled. Automation options depend on the machine model and customer requirements.
9. Does laser welding require shielding gas?
Many laser welding applications use shielding gas to protect the welding area. Gas type and flow rate depend on the material and welding process.
10. Can the machine be customized?
Yes. Laser power, laser source, cooling system, laser head, accessories, and other components can be customized according to application requirements.
11. Is operator training necessary?
Yes. Operators should receive appropriate training in laser safety, equipment operation, processing parameters, maintenance, and emergency procedures.
12. How do I choose the right configuration?
Provide the materials, material thickness, welding requirements, cutting requirements, cleaning applications, expected workload, and production environment. These details can be used to recommend a suitable configuration.
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