Double Wobble Continuous Laser Cleaning Machine
The double wobble continuous laser cleaning machine is designed for high-speed, precise, and non-contact surface cleaning with enhanced efficiency and flexibility.This advanced system features dual-wobble laser heads that provide a continuous, high-coverage cleaning action, ensuring thorough and consistent removal of rust, coatings, contaminants, and residues from a wide range of surfaces.
Category: Laser Machine>>Laser Cleaner
Response time: Within 1 hour
Supply Ability: 300 sets/month
Price: $5000-$8000
Description
Continuous Laser Cleaning Machine
The iGOLDENCNC “Double Wobble Continuous Laser Cleaning Machine” is essentially an industrial-grade fiber-laser cleaning system. It uses a continuous-wave (CW) fiber laser — with selectable power levels such as 1500 W, 2000 W, 3000 W, up to 6000 W — combined with a dual-wobble laser head.
“Double wobble” refers to the scanning / head motion mechanism: the laser beam is “wobbled” (i.e. oscillated / scanned) across the surface, enabling a wider cleaning swath and more uniform coverage than a fixed beam. That helps speed up cleaning and handles larger areas more efficiently.
Equipped with double wobble laser cleaning heads, this machine provides a wider cleaning area and improved surface coverage, effectively removing rust, paint, oil, coatings, and oxidation without damaging the base material. The continuous laser generator ensures consistent, high-power cleaning, while the beam transmission system delivers stable energy output.
The water chiller prevents overheating, ensuring long-term reliable performance. For added safety, the safety interlock device and protective shell minimize laser exposure risks. With its high-precision double wobble technology, this machine is perfect for automotive, aerospace, shipbuilding, industrial equipment maintenance, and large-scale metal surface treatment.

Hand-held cleaning laser head

Double Wobble Laser Cleaning Head

Dual-axis ultra-wide cleaning head

Single-Axis Cleaning Head
Product Application




CLEANING PERFORMANCE DATA
| Substrate | Surface | Effective focal depth (mm) | Standard cleaning efficiency (mm/min) | High-speed cleaning efficiency (mm/min) | Effect |
| Cast iron | Severely corroded 0.08mm | >35 | 2000 | 3000 | The surface is clean and the substrate is not damaged |
| Carbon steel plate | Moderate rust 0.5mm | >40 | 1800 | 2400 | The surface is clean and the substrate is not damaged |
| Stainless steel | Surface oil, slight rust | >50 | 2000 | 3000 | The surface is clean and the substrate is not damaged |
| Mold copper gear | Moderately oily, with iron filings attached | >45 | 2000 | 2300 | The surface is clean and the substrate is not damaged |
| Aluminum plate | Oxide, surface fouling | >35 | 2000 | 2300 | The surface is clean and the substrate is not damaged |
Laser Rust Removal Machines Related
CLEANING COMPARISON
| Compare items | Laser cleaning | Chemical cleaning | Mechanical grinding | Dry ice cleaning | Ultrasonic cleaning | Blast cleaning |
| Cleaning method | Contactless | Contact | Contact | Contactless | Contact dip | Contact |
| Workpiece damage | No damage | Damaged | Damaged | No damage | No damage | Damaged |
| Cleaning efficiency | High | Low | Low | Medium | Medium | Medium |
| Consumables | Just power up | Chemical cleaning agent | Sandpaper, Grinding wheel | Dry ice | Special cleaning agent | Special sand |
| Cleaning effect | Very talented High cleanliness |
Generally Uneven |
Generally Uneven |
Excellent Uneven |
Excellent Small clean area |
Generally Uneven |
| Precise cleaning | Precise and controllable High accuracy |
Can not control poor accuracy |
Can not control Poor benchmark |
Can not control poor accuracy |
Cannot be specified Range cleaning |
Can’t clean dead corners |
| Safety/environmental protection | Safe and pollution-free | Seriously pollute the environment | Polluted environment | No pollution | No pollution | Polluted environment |
| Manual operation | Handheld or automated | The process is complicated high personnel requirements |
Time consuming Protective measures are required |
Handheld or automated | Manually add consumables | labor-intensive |
| Cost input | High initial cost low maintenance cost |
Medium initial cost High cost of consumables |
Medium initial cost High artificial consumables |
Medium initial cost High cost of consumables |
Low initial cost Medium cost of consumables |
High initial cost High cost of consumables |
Laser Rust Removal FAQ
- Laser interaction: A pulsed laser delivers energy to the rust and oxide layer. The absorbed energy causes rapid heating and micro-explosions that ablate the oxide from the surface.
- Selective removal: Rust layers (iron oxides) have different absorption properties than clean steel, enabling selective removal with proper wavelength and pulse settings.
- Debris management: The process creates small particulates and oxide debris that are typically carried away by a suction system or water-assisted cleaning to keep the surface clear.
- Substrate preservation: With appropriate parameters, the underlying metal remains undamaged and free from unwanted etching.
When evaluating machines, these are the main parameters and features to check:
| Spec / Feature | Why It Matters |
|---|---|
| Laser Power (Wattage) | More power lets you clean faster, larger surfaces, or heavier rust layers. Lower power is okay for delicate work. |
| Laser Type / Mode (CW vs Pulsed / Modulated) | Pulsed or modulated lasers allow more control, reduce heat build-up, better for fine work. CW (continuous wave) lasers are often simpler, sometimes less expensive. |
| Wavelength | Most industrial rust-removal lasers are around 1064-1080 nm (fiber lasers). This affects absorption, efficiency, safety. |
| Beam quality / Scan Width | How wide a strip it cleans, how fast (scan speed), how precise. |
| Cooling | Water cooling vs air cooling. Higher power usually needs water cooling. Keeps the machine and optics from overheating. |
| Mobility / Handheld vs Bench / Fixed | Do you need to move it around or treat large, fixed surfaces? Portability adds cost/complexity. |
| Safety features | Eye protection, interlocks, shielding, proper ventilation for fumes/particles. Lasers are hazardous. |
| Power supply / voltage | Be sure your facility can supply the correct voltage, phase, etc. Some machines need 220-240V single or three phase. |
| Maintenance & Consumables | Lens protection windows, filters, spare optics. Also, energy costs and training. |
Laser rust removal machines have become increasingly accessible in 2024-2025, with prices ranging from $3,800 to $52,000, from low-power removers to high-power cleaners to automatic rust removing robot.The best handheld laser rust removal machines are available for sale at affordable prices, ranging from $6,000 to $16,800
The versatility of laser rust removal machines has led to their adoption across numerous industries, each finding unique applications that leverage the technology’s specific advantages.
Automotive Industry In automotive applications, laser cleaning has revolutionized both manufacturing and restoration processes. During production, these machines prepare surfaces for welding, remove scale from stampings, and clean molds used in plastic and rubber component manufacturing. In the restoration market, classic car enthusiasts and professional restoration shops use laser cleaning to remove rust, paint, and other contaminants from vintage vehicles without damaging original metal surfaces.
Aerospace and Defense The aerospace industry demands the highest levels of precision and quality control, making laser cleaning an ideal fit. These machines are used for preparing surfaces before critical welding operations, removing thermal barrier coatings from turbine components, and maintaining sensitive equipment without introducing foreign materials or causing dimensional changes.
Marine Industry Ship maintenance and offshore equipment servicing have been transformed by laser cleaning technology. The ability to remove marine growth, corrosion, and protective coatings without generating waste or requiring special disposal procedures makes laser cleaning particularly valuable in marine environments where environmental protection is paramount.
Historical Preservation and Restoration Museums, restoration professionals, and historical societies have embraced laser cleaning for its ability to remove contaminants and corrosion from artifacts without causing damage. The precision control available with laser systems allows conservators to work on irreplaceable items with confidence, knowing they can remove unwanted materials while preserving original surfaces.
Manufacturing and Heavy Industry Large-scale manufacturing operations use laser cleaning for routine maintenance, pre-welding preparation, and quality control processes. The ability to integrate laser cleaning systems into automated production lines has made them valuable assets in modern manufacturing environments.
The laser cleaning industry continues to evolve rapidly, with new developments promising even greater capabilities and efficiency. Artificial intelligence integration is beginning to appear in advanced systems, allowing machines to automatically adjust parameters based on surface conditions and contamination types. This reduces the skill level required for operation and improves consistency across different operators and shifts.
Improved laser sources are providing higher efficiency and longer service life, reducing operational costs and maintenance requirements. New wavelengths and pulse characteristics are being developed to optimize cleaning performance for specific applications and materials.
Automation integration is another significant trend, with laser cleaning systems being designed for seamless integration into robotic systems and automated production lines. This allows for unmanned operation and integration with Industry 4.0 manufacturing concepts.
Portable system improvements are making laser cleaning accessible to smaller operations and field service applications. Battery-powered units and more compact designs are expanding the range of applications where laser cleaning can be effectively utilized.
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