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Laser Surface Additive Manufacturing

Laser Cladding

Laser Cladding

Guosheng laser cladding technology is an innovative surface engineering technology that precisely coats high-performance metal materials on the surface of part substrates using high-energy laser beams. Due to the extremely high energy of the laser beam, the cladding material and the base material can melt simultaneously and form a tight metallurgical bond coating after rapid cooling. This feature significantly enhances the wear resistance, corrosion resistance, high-temperature resistance and oxidation resistance of the part surface, thereby enabling the modification or repair of the part surface. It not only meets specific performance requirements but also effectively saves the use of precious elements.


On this basis, laser additive remanufacturing technology emerged. This technology takes laser cladding technology as its core and focuses on the comprehensive restoration of the appearance and mechanical properties of parts that have failed in service or been misprocessed. Through laser additive remanufacturing, damaged parts can regain their vitality and restore their original functions.

Service Advantages

Master the core technology of laser material thermal processing

Processing services nationwide

Processing services nationwide

Nine processing service bases have been established in regions such as the Yangtze River Delta, Beijing-Tianjin-Hebei, and Southwest China

The technology and process are mature

The technology and process are mature

We have accumulated a database of laser additive manufacturing processes for various high-performance alloy materials

Lower processing costs

Lower processing costs

The cost of remelting can be reduced to be comparable to that of hard chromium plating, offering a higher cost performance

Support customized services

Support customized services

This includes the initial modeling, process development, printing and molding, as well as subsequent machining

High-efficiency production capacity

High-efficiency production capacity

Equipped with advanced facilities and a professional team, we can meet customers' delivery time requirements

Processing Characteristics

Achieve a tight metallurgical bond between the cladding layer and the substrate

•  Metallurgical bonding:By taking advantage of the high energy density of the laser beam, a tight metallurgical bond between the cladding layer and the substrate is achieved, ensuring the strength and durability of the repaired area.


•  Precise control:By adjusting the laser parameters, the thickness, composition and shape of the cladding layer can be precisely controlled to meet complex repair requirements.


•  Wear resistance and corrosion resistance:The optimization of alloy elements in the cladding layer significantly enhances the wear resistance and corrosion resistance of parts, thereby extending their service life.


•  Efficient and environmentally friendly:It features fast heating and cooling speeds, high production efficiency, and a pollution-free process, meeting the requirements of green manufacturing.


•  Widely applicable:It can be used for the repair of complex-shaped parts, such as deep holes and grooves, and has a wide range of applications.


•  Minimal deformation:Low heat input results in minimal workpiece deformation, ensuring the accuracy and dimensional stability of the repaired parts.


•  High level of automation:It has a high degree of integration, is easy to achieve automated production, reduces operational difficulty and improves production efficiency.

Laser Cladding

Material Category

With 10 years of accumulation, Guosheng Laser's process database empowers innovation and service

Iron-based

316L, 17-4PH, SS410,420 440

Stainless steel repair and forming anti-oxidation coating

H13(SKD61), P20, P21, CPM

Die-casting molds, injection molds, stamping molds, and coated molds

40Cr,45#, CL60, 42CrMo,40CrMnMo, 30CrMnSiA,38CrMoAl

Shaft, gear and disc parts

INVAR

Low coefficient of expansion material

Nickel-based

3IN718(GH4169), IN625, Waspalloy(GH738), GH4648,GH3030

Engine parts oil drilling

Rene41,Rene142

Engine casing blades

CMSX-4, Rene N5, DD6

Single crystal turbine blades

Cobalt-based

Stellite 6, 21, 31

High-temperature resistant coating molds

Co50, 42

High-temperature resistant coating molds

Deloro 50,60

Repair with highly wear-resistant and corrosion-resistant materials

Titanium-based

Ti-6Al-4V(TC4), TA15, TC17, TC2

Biomedical stent engine

TiAl

Turbine blade

TiNi

Medical devices

Aluminum alloy

AlSi, AlCu, AlMg, AlZn

High-end power equipment for rail vehicles

Ceramic

WC,SiC

Wear-resistant material