Industry Practices

Laser Cleaning Applications

Laser cleaning is a versatile and efficient process applicable to a wide range of surfaces. Its precision and ability to remove contaminants without damaging the underlying material make it ideal for various industries. By leveraging laser cleaning, manufacturers can achieve high-quality surface preparation with minimal residue and excellent repeatability.

Automotive

Laser cleaning effectively removes oil, scale, and other deposits from engine parts such as pistons, cylinder heads, and intake manifolds.

Material Texturing

Manufacturers use laser cleaning to prepare surfaces by removing oxides, lubricants, and other residues before further processing. This enhances adhesion and overall product quality.

Restoration

Restoration of historical artifacts (paintings, sculptures, furniture) and buildings, removing dirt, grime, and pollutants without harming the original material.

Weld Processing

Laser cleaning degreases materials before welding and removes oxidation after the welding process, ensuring clean and strong welds.

Paint Removal

Laser cleaning allows for the precise removal of paint from various surfaces without damaging the base material. This process removes paint layer by layer (probing) to achieve the desired result.

Surface Sanitation

Effectively removes contaminants like biofilms, grease, and organic residues from the equipment in the Food and Beverage industry. It ensures thorough cleanliness without harsh chemicals, maintaining high hygiene standards in food processing.

Suitable Materials

Metals

Laser cleaning is highly effective for removing rust, paint, oxides, and other contaminants from various metals, including stainless-steel, aluminum, copper, gold, silver, etc.

Stone

This technology can safely remove pollutants, biological growth, and graffiti from natural and historical stone structures

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Plastics

Laser cleaning is used to remove contaminants, residues, and surface treatments from plastics and rubber, without causing thermal damage.

Compounds

Laser cleaning can precisely remove coatings, oxides, and contaminants from compound materials such as ceramics and composites

Unlimited Possibilities

Laser Cleaning Application Gallery

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Technology Features

Laser cleaning is an advanced technology that outperforms traditional cleaning methods in precision and effectiveness. It ensures high-quality surface preparation by removing contaminants without damaging the underlying material.

Non-Abrasive

Laser cleaning is a contactless technology with no chemical or mechanical abrasives. It preserves the integrity of the underlying material.

High Precision

The technology allows for highly precise cleaning, targeting specific areas with various power and size settings and without affecting adjacent surfaces.

Compact and Portable

Diodela laser cleaning systems are compact and portable (with 4 wheels), making it easy for the user to move and change work locations.

Eco-Friendly

Laser cleaning is an environmentally friendly process, producing minimal waste and eliminating the need for harmful chemicals.

Low Operational Costs

During the process, only the electric power is consumed.

Easy to Learn

With Diodela laser cleaning systems, it takes only 5 minutes to start working.

How Does It Work

Laser cleaning is an industrial process that removes unwanted coatings or deposits using highly concentrated laser light. High-intensity laser pulses target contaminants like rust, causing them to vaporize or be ejected, leaving the underlying material clean and undamaged. This precise, efficient, and eco-friendly method eliminates the need for chemicals or abrasives.

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