Laser cladding of the highest quality

Laser cladding has proven to be an ideal process for producing wear-resistant coatings on components. In addition, laser cladding is ideally suited for repair work on tools and for welding in tool inserts.

Laser cladding is a technology that generates high-quality, high-strength pore-free coatings, whereby a wide variety of material combinations can be realized. The protective coatings applied during cladding with the laser impress with extremely long durability and increase the chemical resistance of the surfaces. The high-power laser beam creates a molten bath on the surface of the workpiece to be processed, to which the coating material (as powder or wire) is added. After cladding with the laser, this additional material forms the coating metallurgically bonded to the surface, which provides the surface with certain functions, repairs it or makes it wear-resistant. In this way, a particularly hard-wearing coating is created.

Laser cladding - ERLAS offers you optimal results and convinces through:

  • The latest technical equipment
  • Highly qualified team
  • Vast experience
  • Excellent customer service
  • Full service from one source
  • Comprehensive service spectrum
  • On-time delivery
Laserauftragschweißen einer Schneckenfördererspitze

As a renowned laser technology company, we have years of experience with a wide range of filler materials in powder form and achieve excellent results with laser powder cladding. Materials processed in laser cladding include iron-based, Ni-based, titanium, white metals as well as bronzes. Laser cladding makes it possible to apply the similar or dissimilar layers in multiple layers, if necessary, and serves both repair purposes and wear protection as well as the adaptation of geometries. ERLAS carries out the processes of cladding with the laser in a temperature-controlled way with self-developed and self-built equipment technology. Many years of experience and developments in this field make ERLAS a company with outstanding, recognized expertise.

For laser cladding, ERLAS has three laser systems that enable 3-D processing. With these systems, we can use coating materials in wire or powder form. We would be happy to inform you about our laser cladding services and present the option of laser powder cladding in detail. Simply contact our customer representatives here to find out about the wide range of laser cladding options available to you.

Laser coating with the latest technology

At ERLAS, the programming of the systems for laser cladding is carried out with the help of consistent software support at the CAM programming workstation. There, the complete processing task of laser cladding is simulated, including a collision analysis, so that we can offer our customers perfect quality. Non-destructive (crack detection, hardness measurement) and destructive (cross-section, microhardness measurement) testing methods are available for checking the layer structure after laser cladding. Components can be measured very accurately before and after laser cladding using a modern 3-D measuring scanner, so that the applied coating thickness can be determined precisely. For smaller processing tasks, our mobile, hand-guided system is also suitable, enabling processing directly on your premises. Would you like to learn more about the possibilities of cooperation? In the section about us you will find a lot of information.

Laptop mit CAM Software

In addition to laser cladding, we also offer the following contract manufacturing processes:

ERLAS offers you a wide range of high-quality services and enables the customized development of processes and machines. Decades of experience and excellent expertise have made us a renowned supplier in the field of laser processing. Make an appointment for a personal consultation if you are interested in laser buildup welding or any of our other high-quality services.

ERLAS Erlanger Lasertechnik GmbH
Kraftwerkstr. 26
91056 Erlangen - Germany
Phone.: +49-9131-9066-0
Fax: +49-9131-9066-66




Made with 💙 in Erlangen
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