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Laser technology for the Aerospace industry

The aerospace industry is moving away from fossil fuels. Pushed by the need to electrify transportation, manufacturers of electrified aircraft such as STOLs and eVTOLs are looking for new technologies.Laser cleaning & marking can help them automate production, meet safety requirements, and get their products certified.Laser technology can be used for all types of parts:
BATTERY CELLS ULTRASONIC WIRE BONDING PREPARATION
Ultrasonic bonding requires a perfectly clean surface to ensure high strength and low resistance wires and interconnects. Laser cleaning is the ideal technology to prepare cells for bonding, as it eliminates chemicals from the cleaning process and speeds up surface preparation.
COOLING PLATES CLEANING
Cooling plates in electric propulsion systems or critical electronic components require thorough cleaning to remove residues, oxides, and contaminants that could compromise thermal performance. Laser cleaning provides a contactless solution, removing impurities without damaging the structure or altering the geometry of the plates. This improves heat dissipation and increases the reliability of cooling systems, contributing to the safety and efficiency of electric aircraft.
HOUSINGS SURFACE PREPARATION
Before final assembly or processes such as painting, anodizing, or coating application, proper surface preparation of housings is essential to ensure adhesion and durability of subsequent treatments. Laser cleaning and treatment allow for the uniform and controlled removal of oils, greases, and oxides, ensuring that parts comply with the stringent safety standards of the aerospace industry. This not only improves the quality of the finish but also reduces rework and future failures

Laser technology for the energy industry

The energy industry is undergoing rapid transformation with the shift to renewable energy sources. As manufacturers of solar energy systems and energy storage systems (ESS) strive to scale up production, they are increasingly turning to laser welding, cleaning and marking to enhance productivity.

Laser welding represents a significant advancement in battery manufacturing. Its precision, efficiency, and versatility contribute to cost effective and high quality production. It also helps to develop more efficient and sustainable energy solutions. Laser technology can be used for all types of parts:

LASER MARKING FOR TRACEABILITY

Laser marking is a rapid, precise, and reliable method for creating permanent identifiers that ensure traceability in battery production. Serial numbers, data matrix codes, and other crucial markers can be etched in under 100 milliseconds.In the manufacturing of energy storage batteries, electrodes within cylindrical cells can be marked in real time on production conveyors, enabling validation at each stage ofthe process.

LASER CLEANING BEFORE WELDING

Proper surface preparation before welding is crucial to ensure joint integrity and avoid structural defects, especially in critical applications such as the aerospace industry. Residues, oxides, oil, and other contaminants can compromise weld quality, resulting in premature failures or low mechanical strength. Laser cleaning provides an effective, non-contact solution to quickly and controllably remove impurities while preserving the material's original characteristics.

As a result, weld joints remain free of contaminants, enabling a more consistent and robust bond. In addition to enhancing process quality, laser cleaning reduces rework and contributes to compliance with the strict safety and performance standards of the industry sector.

Laser solutions for the solar photovoltaics industry

The thin film photostatic industry is at the forefront of renewable energy innovation, transforming solar power into one of the most efficient and eco friendly energy sources. Our innovative laser solutions enable manufacturers and recycle in the industry to achieve their full potential by meeting the highest production standards and driving sustainability.MRodin offer advanced capabilities for precision manufacturing and processing of solar panels. These solutions include laser engraving,cleaning and marking of photovoltaic cells and modules, ensuring high efficiency, durability, and reliability. Lasers enable precise cutting of thin materials, creating clean, accurate edges without mechanical stress. Laser marking provides traceability for quality control,additionally, laser cleaning removes contaminants from solar surfaces without damage. Laser technologies drive automation and cost effectiveness, supporting the growing demand for renewable energy.
THIN FILM CLEANING FOR RECYCLING
Ultrasonic bonding requires a perfectly clean surface to ensure high strength and low resistance wires and interconnects. Laser cleaning is the ideal technology to prepare cells for bonding, as it eliminates chemicals from the cleaning process and speeds up surface preparation

Laser solutions for the automotive & EV industry

To address the most demanding automotive requirements, MRodin provides the fastest lasers on the market. Our turnkey solutions are built with industrial grade components and meet class-1 laser safety standards.

We ve developed exclusive processes for the industry. Our laser marking meets cradle to grave traceability requirements when parts are shot blasted, coated, and so on. Our cleaning expertise also allows manufacturers to get rid of masking. They can selectively remove paint instead, leaving a texture that improves adhesion if needed.With the current transition from combustion engines to electric motors, lasers will play an even bigger role than before, with laser cleaning and welding becoming major processes for battery manufacturing.

POWER TRAIN & DRIVE TRAIN SYSTEMS

Power train and drive train manufacturers can improve efficiency and quality with laser technology. Traceability can be implemented at the start of production by etching high contrast codes that withstand e coating, photostatting, and heat treating. Moreover, masking is no longer needed in paint lines, as lasers can automatically clean assembly areas after painting or photostatting

ELECTRIC VEHICLES
Electric vehicle rotors often require surface preparation to ensure optimal bonding, insulation, or coating adhesion. Laser cleaning removes contaminants, oxides, or residual oils from rotor surfaces without damaging the underlying material. This process creates an ideal substrate for further operations, whether it’s applying protective coatings or performing high-quality welds. Additionally, laser marking can be used for part identification and traceability, ensuring compliance with industry standards and supporting quality control throughout the product lifecycle.