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About Laser Cladding as well as Laser Hardfacing

Laserlight Cladding and Laser beam Hardfacing are elemental manufacturing technologies making use of the high strength of any laser in order to bond a high performance alloy in order to a metal essence of typically less quality. The laser beam cladding layer is definitely customized for prevention of corrosion, wear, warm fatigue and some other failure causing conditions. In laser hardfacing, additional hard allergens are embedded into the layer to be able to offer superior opposition against abrasive have on.

Cost Savings Probable

Today laser cladding is an important cost personal savings tool since it considerably increases the lifetime of high performance components and at the same time reduces the use of rare and expensive metal materials.

Characteristics involving Laser Cladding

The increasing popularity regarding laser cladding as opposed to conventional solutions such as thermal spraying (HVOF, Sang, Cold Spray etc) and arc contribution welding (PTA, TIG etc) is powered by characteristics like:

The high functionality alloy is melted with minimal dilution with the lesser substrate material, thus keeping the qualities of the performance alloys.

The melt metallurgical bond between the entirely dense performance metal and the substrate is extremely solid and free regarding defects.

Heat insight into the essence is minimal hence not damaging important properties or triggering heat related daub.





Laser Cladding Supplies & Alloys

Lazer cladding is a versatile technology that can be applied with a wide variety of materials. Usually, any material that could be melted and joined with a base by using a high-energy lazer may be used in lazer cladding. Commonly used are:

Nickel metals such as INCONEL 625, INCONEL 718, C276, COLMONOY 6

Cobalt alloys like STELLITE 1, STELLITE 6, STELLITE 21





Ceramic-reinforced alloys for instance our M-Series Tungsten Carbide Alloys

Precious stone reinforced alloys such as our Diamondite-M alloys