Laser-Swipe© Series: Cleaning machines with only light
100% Ecologic and economic Cleaning
Get Rid of Consumables & Go Green
As a green technology, lasersurface cleaning replaces methods that remove rust and dirt with consumables or chemicals.
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It’s the only solution that meets environmental protection regulations.
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Plus, pulsed fiber lasers have low power consumption.
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Laser surface cleaning does generate only a very small amount of dust in the air.
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It can be vacuumed instantly with a dust extraction system, which we provide and preconfigure for you if needed.
Laser-Swipe© Series: the only affordable sustainable cleaning solution
Waste-free & sustainable cleaning
The Advantage of Laser Cleaning: It is a long-term solution.
A laser cleaning machine will serve you longer than any scrubber or rust removing chemical will. The laser does not suffer any wear or tear, and thus can be used and reused over its lifetime.
It’s a non-contact, non-abrasive process.
Home remedies are messy and unhealthy. Scrubbing off rusted surfaces exposes you to impurities which could lead to respiratory complications. Laser cleaning, on the other hand, relies on the laser beam to ablate the surface. There is no physical contact between you and the rust.
No use of chemicals.
Rust remover chemicals can get the job done, but the health implications on their use outweigh their benefit. Such chemicals are not only harsh and abrasive but also emit intense fumes. You will need to wear protective gear such as a respirator, goggles and rubber gloves before using them. However, laser cleaning does not rely on any chemical application. It is the better choice as it does not put your health at risk.
No secondary waste is produced.
Scrubbing off rust from surfaces only disintegrates the rusty particles from the substrate, leaving you with a toxic lump of rust dust at the end of the process. Electrolysis leaves the rust particles floating in the water, which you later have to dispose of. In comparison, laser cleaning is a cleaner process as the rust particles are either vaporized or turned into plasma, leaving no evidence of waste.
High precision.
The focused laser beams have an extremely precise focal edge, allowing you to ablate rust from tough spots that would otherwise be harder to clean with other apparatus. Such include the rust that develops around bolts and rails. Additionally, the high precision allows you to focus the laser beam repeatedly over a specific area to achieve the required depth and result.
It’s effective on all surfaces.
Unlike other rust removal procedures, laser cleaning works on all surfaces that are prone to rusting, including stones, concrete, iron, aluminum (bauxite) or copper.
It does not degrade the substrate.
Scrubbing rusted surfaces significantly degrades the substrate due to friction. Rust removing chemicals, on the other hand, are harsh and corrosive, causing wear and tear that could spoil delicate metals or even weaken their robustness. Laser cleaning in comparison ablates the surface while leaving the substrate untouched.
Environmentally friendly cleaning
Neither cleaning media nor abrasives are required
When cleaning with laser radiation, dirt and cover layers are removed in an environmentally friendly way only by bundled light. Neither cleaning media nor abrasives are required. Energy consumption can be reduced by up to 87 %. This means that valuable resources can be saved to a considerable extent both in production and in the use of equipment technology.
ADVANTAGES
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No blasting agents and chemical cleaning agents
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Energy savings (up to 8 times lower than with conventional processes)
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No solvents (climate protection)
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No distribution/mixing of blasting material and ablated particles
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Direct extraction and thus safe and homogeneous disposal
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Saving of transports through decentralized cleaning
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Saving on masking stickers etc.
OUR LASER CLEANING MACHINES CONTRIBUTE TO ENVIRONMENTAL PROTECTION
MOST GREEN CLEANING OFF ALL
As global environmental issues become more severe, the demand for industrially clean products and equipment in the global market is increasing year by year. The quality and cleanliness of cleaning/washing machine equipment and its impact on the environment are becoming increasingly important. As product quality continues to improve, its assessment of environmental impact is normal, and many industries are investigating how to optimize the cleanliness of automated linear production.
Laser cleaning has been proven to fully achieve this goal and highlight its excellence. The infrared light emitted by the laser can be used to clean residual residues on the metal surface, produce residues and oxide residues on steel, aluminum, stone, copper and other substrates. In the case of the original temperature, the surface deposits can quickly absorb the laser energy and peel off from the surface of the object, while the surface remains intact, the cleaning process can be done by hand-held laser or using a robotic arm.
Laser technology, and more specific Fiber Laser Technology is just emerging as a new technology. Laser cleaning technology has gradually replaced traditional chemical cleaning and contact physical cleaning technology. It is slowly developing into the mainstream technology of industrial cleaning. Compared with traditional cleaning methods, laser cleaning does not use any chemical, dry ice and other cleaning media to avoid secondary pollution, which means that our cleaning method is green and environmentally friendly. In addition, laser technology is one of the few cleaning technologies for automated industrial cleaning, reducing operating costs, improving cleaning quality, and meeting market demands.
ADVANTAGES OF LASER CLEANING COMPARED WITH TRADITIONAL CLEANING
Comparison Item | Laser Clean | Chemical Clean | Dry Ice Clean | Mechanical Clean | Ultrasonic Clean | Sandblasting |
Cleaning Method | By Laser, non-contact | Chemical reagent, contact material | Dry ice, non-contact | Mechanical Abrasive contact material | Cleaning agent, contact material | Special sand particles |
Damage | No | Yes | No | Yes | No | Yes |
Cleaning Efficiency | High | Low | Medium | Low | Medium | Medium |
Consumables | Only electricity | Chemical reagent | Dry ice | Sandpaper, Grinding wheel, abrasive stone/etc. | Special cleaning fluid | Special sand particles |
Cleaning Effect | Excellent, high cleanness | Ordinary, uneven | Good, but uneven | Ordinary, uneven | Good, but less cleanliness | Ordinary, uneven |
Precision | Precise control, high precision | Not control, very low precision | Not control, very low precision | Not control, medium precision | Cannot specify a range to clean | Cannot specify a range to clean |
Safety/Environmental protection | No any pollution | Seriously polluting environment | No pollution | Polluting environment | No pollution | Polluting environment |
Manual Operation | Easy operation, hand-held or automatic | Complicate operation, high requirements to workers, pollution protection measures needed. | Easy operation, hand-held or automatic | Expend labour, pollution protection measures needed | Easy operation, but need to add consumables manually | Expend labour, pollution protection measures needed |
Cost Input | Higher initial cost, no consumables, very low maintenance cost | Low initial cost, very high consumables cost | Medium initial cost, high consumables cost | High initial cost, high consumable and labor costs | Low initial cost, medium consumables cost | High initial cost, high consumable and labor costs |
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