FL-CLP | Pulsed Laser Cleaning Machine
A pulsed laser cleaning system for controlled removal of rust, oxide, paint and selected surface contaminants.
1 / 6 - CE-compliant & export-ready
- 1-year limited warranty (extendable on core parts)
- 30-day money-back guarantee
- Free lifetime technical support
- Worldwide shipping & logistics handled
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Details
Key Specifications
| Specification | Value |
| Average Laser Power | 100W / 200W / 300W / 500W |
| Pulse Energy | 15mJ |
| Cleaning Width | 0–300 mm (Subject to Configuration) |
| Laser Mode | Pulsed Fiber Laser |
Overview
100 / 200 / 300 / 500 W
Pulse Laser Cleaning Machine
- High Cleaning Efficiency
- Non-contact Cleaning
- Safe and Reliable
- Wide Application
- Energy Saving
The Pulsed Laser Cleaning Machine is a precision surface treatment solution designed for removing rust, oxide layers, paint, oil, coatings and contaminants from metal and sensitive surfaces. It uses high-energy laser pulses to achieve non-contact cleaning without chemical agents or abrasive materials. The machine is widely used in mold maintenance, aerospace components, automotive parts, electronics and precision manufacturing industries where surface protection and cleaning accuracy are required.
Cleaning Effect Display
Efficient cleaning with controlled impact on the substrate.
Weld Seam CleaningOil and Oxide Removal
Capabilities
| Capability | Description | Evidence | Visual |
| Precision Rust Removal | The pulsed laser cleaning system removes rust and corrosion layers from metal surfaces while minimizing substrate impact when validated parameters are used. It is suitable for precision parts and equipment maintenance. | Adjustable pulse energy, non-contact processing |
Precision Rust RemovalControlled pulsed laser cleaning removes rust from compatible metal surfaces without mechanical contact. |
| Oxide Layer Removal | The machine effectively removes oxide layers generated during welding, heating or long-term exposure, improving surface quality before further processing. | High precision laser pulse control |
Oxide Layer RemovalAdjustable laser parameters support oxide and discoloration removal on suitable metal surfaces. |
| Mold Cleaning | Pulsed laser technology can remove oil, residue and release agents from selected mold surfaces without mechanical contact. Parameter testing is required for textured, coated or high-value molds. | Suitable for precision molds and tooling maintenance |
Mold CleaningNon-contact cleaning helps remove selected oil and residue from mold surfaces after parameter testing. |
| Coating & Paint Removal | The system uses controlled laser ablation to remove selected paints and coatings from compatible metal surfaces. Coating composition must be evaluated before processing, and suitable fume extraction is required. | Adjustable scanning parameters |
Coating and Paint RemovalControlled laser ablation removes selected coatings from compatible surfaces with suitable extraction. |
Applications
| Material / Workpiece | Typical Application | Recommended Configuration | Process Note |
| Stainless Steel Parts | Oxide, discoloration and selected contaminants | Configuration based on sample testing | Confirm surface finish requirements before processing |
| Mold Components | Oil, residue and release-agent removal | Low-energy precision configuration | Test textured, coated and high-value molds first |
| Aluminum Alloy Parts | Selected oxide and surface contamination | Controlled low-energy configuration | Aluminum is sensitive to excessive energy input |
| Welded Metal Surfaces | Weld discoloration and surrounding oxide | Portable pulsed laser configuration | Confirm required post-cleaning surface condition |
| Carbon Steel Structures | Rust and corrosion removal | Higher-power configuration | Extraction is required for removed particles |
| Copper Components | Selected surface oxides | Fine pulse adjustment | Reflective materials require technical evaluation |
| Automotive Components | Oil, oxide and carbon contamination | Configuration based on contamination type | Confirm whether residues can generate hazardous fumes |
Samples
| Contaminant | Base Material | Layer Thickness | Laser Power | Surface Result | Image |
| Rust Layer | Carbon Steel | 200μm | 200W | Rust removed with clean metal surface | ![]() |
| Oxide Layer | Stainless Steel | 50μm | 100W | Oxide discoloration removed and surface restored | ![]() |
| Welding Oxidation | Stainless Steel | 100μm | 100W | Weld seam appearance improved after cleaning | ![]() |
| Oil Contamination | Mold Steel | 30μm | 100W | Oil and residue removed from mold surface | ![]() |
| Paint Coating | Metal Sheet | 500μm | 300W | Coating removed without mechanical abrasion | ![]() |
| Carbon Deposit | Automotive Metal Parts | 200μm | 200W | Surface contamination removed effectively | ![]() |
Specifications
General Specifications
| Parameter | Value |
| Model | FL-CLP |
| Machine Dimensions | 770*375*800mm |
| Net Weight | 80KG |
| Warranty | 1 Year |
Product-Specific Specifications
| Parameter | Value |
| Average Laser Power | 100W/200W/300W/500W |
| Pulse Energy | 15mJ |
| Cleaning Width | 0-300mm |
| Laser Mode | Pulsed Fiber Laser |
| Laser Wavelength | 1064nm |
| Pulse Frequency | 1-4000KHZ |
| Cooling Method | Air Cooling / Water Cooling |
| Cleaning Method | Non-contact Laser Ablation Cleaning |
Electrical and the Environment
| Parameter | Value |
| Voltage / Frequency | 220V / 380V, 50Hz/60Hz |
| Overall power consumption | <=3000w |
| Operating Environment | 5℃-40℃ |
| Safety Requirement | Operation requires a controlled laser work area, wavelength-appropriate laser protection, restricted access, suitable local fume extraction, proper grounding and trained operators. Final safety measures must follow the selected machine configuration and applicable local regulations. |
Components
| Component | Brand / Model | Function | Why It Matters | Image |
| Pulsed laser source | JPT | Generates high-energy laser pulses for removing rust, oxide, coating and contamination from surfaces | The laser source directly affects cleaning precision, stability and service life | ![]() |
| Cleaning head | JPT/ZBTK | Controls laser scanning path and cleaning area through precise optical movement | High-quality scanning head improves cleaning efficiency and processing consistency | ![]() |
| Control system | JPT/ZBTK | Controls laser parameters, scanning patterns and cleaning operation process | Intelligent control system allows easier operation and parameter adjustment | ![]() |
| Cooling module | Air Cooling / Water Cooling System | Maintains stable operating temperature of laser components | Proper cooling improves machine reliability during continuous operation | ![]() |
| Scanning system | Galvanometer Scanning System | Controls laser beam movement and cleaning coverage | Ensures uniform cleaning results and higher processing efficiency | ![]() |
| Protective system | Safety Sensor / Protective Components | Provides operator protection during laser cleaning operation | Improves operation safety and machine reliability | ![]() |
Configuration Options
| Option | Standard / Optional | Recommended For | Effect on Price / Lead Time |
| Backpack or Suitcase Design | Optional | Outdoor maintenance, large equipment cleaning, mobile operation | Different structure affects machine cost and delivery time |
| Alternative Pulse-Energy Configuration | Optional | Different contamination levels and material sensitivity | Higher pulse energy may increase cleaning capability and configuration cost |
Standard Configuration Includes:
• Pulsed laser cleaning machine
• Handheld cleaning head
• Standard optical cable
• Control software
• Power cable
• Approved protective eyewear for the supplied wavelength and configuration
• Basic tool kit
• User manual
• Packing case
Options Requiring Engineer Confirmation:
• Laser power and pulse energy
• Cleaning width
• Air-cooled or water-cooled configuration
• Backpack or suitcase structure
• Local fume extraction system
• Automated platform
• Robot integration
• Customized fixture
• Additional safety enclosure or protective screen
Service and Delivery
Download the FL-CLP Product Manual (PDF)
| Stage | Customer Provides | FerroLaser Delivers | Estimated Time |
| Requirement Review | Material type, workpiece size, contamination type, cleaning requirements, country and voltage requirements | Configuration recommendation, technical solution and quotation proposal | 1 working day |
| Configuration & Testing | Samples, photos, drawings or cleaning requirements | Cleaning test, sample feedback, test video or cleaning evaluation | 3 working days |
| Packaging & Shipping | Trade terms, destination ports, import requirements | Professional packaging, shipping documents and logistics arrangement | 7 working days |
| Installation & Support | Installation of environment and operator information | Remote installation guidance, operation training and technical support | Initial response within 24 business hours |
| Item | Period |
| Whole Machine | 1 Year |
| Fiber Laser Source | 2 Years |
| Control System | 1 Year |
| Lifetime Technical Support | Yes |
After-sales Response
• Online Technical Support
• WhatsApp Support
• WeChat Support
• E-mail Support
• Remote Software Diagnosis
• Video Installation Guidance
Customer Feedback
Customer Feedback
The machine removed rust and paint efficiently and reduced manual cleaning time.
The system is straightforward to operate and delivers consistent cleaning results.
The cleaning effect and technical support met the project requirements.
Customer Cases
| Field | Case 1 | Case 2 |
| Customer / Industry | Metal Fabrication Industry | Mold Manufacturing Industry |
| Market | Germany | Belgium |
| Challenge | Rust, oxidation and surface contamination affected product appearance and further processing | Mold residue and oil contamination required frequent cleaning maintenance |
| Configuration | Pulsed Laser Cleaning Machine | Precision Pulsed Laser Cleaning System |
| Material / Workpiece | Steel structure / metal components | Injection mold / tooling parts |
| Solution | Used pulsed laser cleaning technology to remove rust and surface contamination without chemical cleaners | Applied controlled laser pulse cleaning for mold surface maintenance |
| Verified Result | Improved surface cleanliness and reduced manual cleaning workload | Improved cleaning efficiency while maintaining mold surface quality |
| Evidence | ![]() |
Metal Fabrication Cleaning Case
|
FAQ
Why is pulsed laser cleaning more suitable for precision surfaces?
Pulsed laser cleaning uses short-duration high-energy laser pulses to remove rust, oxide layers, coatings and contaminants with controlled energy input. Compared with traditional abrasive or chemical cleaning methods, it provides a non-contact process with lower mechanical impact and better protection for precision surfaces. It is suitable for molds, aerospace parts, electronic components and other applications requiring high cleaning accuracy.
Will laser cleaning damage the base material?
When properly configured, pulsed laser cleaning can selectively remove unwanted surface layers while minimizing impact on the substrate. The laser parameters, including pulse energy, frequency and scanning speed, can be adjusted according to different materials and contamination conditions. A suitable configuration helps achieve effective cleaning while protecting the original surface structure.
How should power and pulse energy be selected?
The suitable laser power and pulse energy depend on the material type, contamination thickness, cleaning area and production requirements. Lower energy settings are generally used for sensitive surfaces, while higher energy configurations are suitable for thicker rust, coatings or heavy contamination. Professional testing is recommended before selecting the final configuration.
Can it clean molds and precision parts?
Yes. Pulsed laser cleaning is widely used for mold maintenance and precision component cleaning. The non-contact process allows operators to clean detailed areas, grooves and complex surfaces without using chemicals or abrasive materials. It helps remove oil, residues, oxide layers and other contaminants while maintaining the original surface condition.
What is the cleaning speed of a pulsed laser cleaning machine?
Cleaning speed depends on laser power, pulse energy, scanning width, contamination type and operator settings. Different applications require different parameter combinations. For accurate evaluation, customers can provide material information, contamination conditions and cleaning requirements for a recommended configuration and testing solution.
Does laser cleaning require dust extraction and protection?
Laser cleaning produces removed particles and fumes depending on the contamination type. Proper ventilation, dust extraction equipment and laser safety protection are recommended for industrial applications. The specific protection requirements depend on the cleaning material, working environment and machine configuration.
What information is needed for an accurate quotation?
To provide a suitable laser cleaning solution, customers should provide the material type, workpiece size, contamination type, cleaning area, required cleaning efficiency, working environment and power supply requirements. Photos or samples are also helpful for recommending the correct machine configuration.
What is the delivery time of a pulsed laser cleaning machine?
Delivery time depends on machine configuration, customization requirements and production schedule. Standard configurations usually require shorter preparation time, while customized solutions such as automation systems or special applications may require additional engineering time.
Is operation training provided?
Yes. FerroLaser provides operation guidance, parameter setting instructions and technical support. Customers can receive training on machine operation, daily maintenance and safety procedures to ensure stable and efficient use of the equipment.
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