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Iron-based powders for laser cladding

Höganäs iron-based overlay welding powders for laser cladding deposition technique.

Rockit® iron (Fe) based powders

Iron (Fe) based overlay welding powders

Particle size: 180/53 µm
Chemistry: Fe 0.15C 18Cr 2.5Ni 0.5Mo <4 Other
Powder type: Water atomised
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Hardness:
    56 HRC (LC/PTA)
    610 HV (LC)
    600 HV (PTA)
 
     

 

Iron (Fe) based overlay welding powders

Particle size: 180/53 µm
Chemistry: Fe 0.15C 16Cr 1.75Ni <5 Other  
Powder type: Water atomised
Typical deposition techniques: Laser cladding

     
 

Remarks:

  • Hardness:
    58 HRC (LC)
    800 HV (LC)
 
     

 

Iron (Fe) based overlay welding powders

Particle size: 180/53 µm
Chemistry: Fe 2C 0.9Si 5Cr 6V <4 Other
Powder type: Gas atomised
Typical deposition techniques: Laser cladding

     
 

Remarks:

  • Hardness:
    64 HRC (LC/PTA)
    980 HV (LC)
    960 HV (PTA)

 
     

 

Surfit® iron (Fe) based powders

Iron (Fe) based (stainless steel) overlay welding powders

Particle size: 150/45 µm
Chemistry: Fe 0.2C 1.3Si 28Cr 16Ni  4.5Mo 1Mn 
Powder type: Gas atomised
Typical deposition techniques: Laser cladding

     
 

Remarks:

  • Hardness:
    26 HRC (LC)
    270 HV (LC)
 
     

 

Iron (Fe) based (stainless steel) overlay welding powders

Particle size: 150/53 µm
Chemistry: Fe 1.75C 1.3Si 28Cr 16Ni  4.5Mo 0.8Mn
Powder type: Gas atomised
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Hardness:
    38 HRC (LC)
    33 HRC (PTA)
    330 HV (LC)
    320 HV (PTA)
 
     

 

Iron (Fe) based (stainless steel) overlay welding powders

Particle size: 150/53 µm
Chemistry: Fe 2.1C 1.2Si 28Cr 11.5Ni 5.5Mo 1Mn 
Powder type: Gas atomised
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Hardness:
    53 HRC (LC)
    47 HRC (PTA)
    410 HV (LC)
 
     

 

Iron (Fe) based (stainless steel) overlay welding powders

Particle size: 150/53 µm
Chemistry: Fe <0.03C 0.5Si 23Cr 13Ni 1Mn
Powder type: Gas atomised
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

 

Iron (Fe) based (stainless steel) overlay welding powders

Particle size: 150/53 µm
Chemistry: Fe <0.03C 1.6Si 17Cr 12Ni 2.5Mo 1.5Mn 
Powder type: Gas atomised
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Hardness:
    180 HV (LC)
 
     

 

Iron (Fe) based (stainless steel) overlay welding powders

Particle size: 150/53 µm
Chemistry: Fe <0.03C 0.5Si 12.5Cr 0.1Mn 
Powder type: Gas atomised
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Hardness:
    17 HRC (LC/PTA)
    230 HV (LC/PTA)
 
     

 

Iron (Fe) based (stainless steel) overlay welding powders

Particle size: 125/45 µm
Chemistry: Fe 0.25C 0.5Si 13Cr <1Ni 1.2Mn 
Powder type: Gas atomised
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Hardness:
    55 HRC (LC/PTA)
    590 HV (LC/PTA)
 
     

 

Iron (Fe) based (stainless steel) overlay welding powders

Particle size: 180/53 µm
Chemistry: Fe 0.25C 0.5Si 13Cr <1Ni 1.2Mn 
Powder type: Gas atomised
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Hardness:
    55 HRC (LC/PTA)
    590 HV (LC/PTA)
 
     

 

Iron (Fe) based (stainless steel) overlay welding powders

Particle size: 150/53 µm
Chemistry: Fe 0.2C 0.75Si 16Cr 1.8Ni <1Mn 
Powder type: Gas atomised
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Hardness:
    53 HRC (LC/PTA)
    560 HV (LC/PTA)
 
     

 

Iron (Fe) based (tool steels) overlay welding powders

Particle size: 150/53 µm
Chemistry: Fe 0.35C 1Si 5Cr 1.5Mo 0.3Mn 1V 
Powder type: Gas atomised
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Hardness:
    53 HRC (LC/PTA)
    560 HV (LC/PTA)
  • Only on request
 
     

 

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