Laser Cladding Alloy Powder

The new materials strengthen and enhance the original component to lengthen its lifespan thereby improving overall engine efficiency at a fraction of the cost of buying a new component.
Laser cladding alloy powder. The capability to mix two or more types of powders and to control the feed rate of each powder flow makes laser cladding a flexible process for. Type of cladding process. Size of cladding material. Alloy 1 alloy 6 alloy 12 t 400 t800 and many more.
At present laser cladding has been successfully carried out on stainless steel die steel malleable cast iron gray cast iron copper alloys titanium alloys aluminum alloys and special alloys such as cobalt based nickel based iron based and other self fusing alloy powder and ceramic phase on the surface of the laser cladding. Cobalt iron nickel alloys martensitic stainless steel and tungsten carbide bronze. The special plate feeder principle with powder suction guarantees exact and precisely reproducible powder feed rates. Gas fed powder cladding gravity powder cladding hotwire cladding.
Dsmw 0014 3 tungsten carbide nickel alloy powder blend for laser cladding en 174 81 kb pdf file dsm 0218 3 cosuperalloy stellite type en 305 08 kb pdf file dsmw 0002 6 nickel based superalloy powders for laser cladding and laser additive manufacturing en. Laser powder cladding works by fusing new material onto old worn out surfaces through welding by laser. Lct offers a complete range of laser cladding powders including metals alloys and carbide blends. Laser cladding powders alloys and other powders for laser caladding surface welding.
It is often used to improve mechanical properties or increase corrosion resistance repair worn out parts and fabricate metal matrix composites. Types of base material. 2020 powder alloy corporation 513. Alloy 625 alloy c 276 nicrbsi nicrsibcumo and many more.
Laser cladding variables. Typical laser cladding powder which lct offers among others are. Carbon manganese alloy stainless and tool steel copper. Laser cladding is a method of depositing material by which a powdered or wire feedstock material is melted and consolidated by use of a laser in order to coat part of a substrate or fabricate a near net shape part additive manufacturing technology.