Laser Cladding Solutions

Restore, Reinforce, and Reimagine your critical components with high-precision Laser Metal Deposition (LMD). Achieve metallurgical bonding with unmatched durability.

Cladding Lathe
Machine Setup
Custom Layer
Thickness on Request
5 Alloy Types
Clad Materials
Repair & Coat
Application
Machine & Process Details
Machine Laser Cladding Lathe
Process Laser Cladding
Compatible Materials
Alloy Steel
Tool Steel
Stainless Steel
Nickel Alloy (Inconel)
Cobalt Alloy (Stellite)
Capability / Thickness Range
Range / Details Cladding layer based on customer requirement
Key Process Points
  • Laser cladding lathe setup enables cylindrical and axial component cladding — ideal for shafts, rollers, and round components
  • Cladding layer thickness is defined as per customer requirement (not a fixed range)
  • Powder feedstock of Alloy Steel, Tool Steel, SS, Inconel, or Stellite deposited as a dense, metallurgically bonded layer
  • Used for both surface protection (wear/corrosion resistance) and dimensional restoration of worn components
  • Lathe-mounted configuration ensures uniform layer deposition on round/cylindrical geometry
  • Low dilution rate preserves the properties of the clad material with minimal mixing into the base metal
Typical Applications
  • Worn shaft and journal diameter restoration
  • Roller and drum surface hardening and rebuild
  • Die and mould cavity repair with hard-facing alloys
  • Inconel/Stellite overlay for corrosion and wear protection
  • Valve seat and stem surface build-up
  • Impeller blade tip restoration

Notes : Cladding layer specifications (thickness, alloy type, number of passes) are finalised based on the customer's component drawing and functional requirement. Trial cladding can be done before full production run.

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