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Hard phase powders for laser cladding

Höganäs hard phase overlay welding powders for laser cladding deposition technique.

Amperweld® hard phase powders

Hard phase overlay welding powders

Particle size: 150/53 µm
Chemistry: C 4% 
Powder type: -
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Cast tungsten carbide
  • 2300-2700 HV0.1
  • Typically used in mixes
 
     

 

Hard phase overlay welding powders

Particle size: 106/36 µm
Chemistry: C 4% 
Powder type: -
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Cast tungsten carbide
  • 2300-2700 HV0.1
  • Typically used in mixes
 
     

 

Hard phase overlay welding powders

Particle size: 150/53 µm
Chemistry: C 4% 
Powder type: -
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Spherical cast tungsten carbide
  • 2700-3100 HV0.1
  • Typically used in mixes
 
     

 

Hard phase overlay welding powders

Particle size: 150/53 µm
Chemistry: C 4.3% – 5.2% (depending on particle size)
Powder type: -
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Macroline®
  • 2300-2700 HV0.1
  • Typically used in mixes
 
     

 

Hard phase overlay welding powders

Particle size: 180/53 µm
Chemistry: C 4.3% – 5.2% (depending on particle size)
Powder type: -
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Macroline®
  • 2300-2700 HV0.1
  • Typically used in mixes
 
     

 

Hard phase overlay welding powders

Particle size: 160/63 µm
Chemistry: -
Powder type: -
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Vanadium carbide
  • 1800-2400 HV0.1
  • Typically used in mixes
 
     

 

Hard phase overlay welding powders

Particle size: 90/45 µm
Chemistry: -
Powder type: -
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Vanadium carbide
  • 1800-2400 HV0.1
  • Typically used in mixes
 
     

 

Hard phase overlay welding powders

Particle size: 45/5 µm
Chemistry: -
Powder type: -
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Vanadium carbide
  • 1800-2400 HV0.1
  • Typically used in mixes
 
     

 

Hard phase overlay welding powders

Particle size: 200/160 to 45/5 µm
Chemistry: -
Powder type: -
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Titanium carbide
  • > 3000 HV0.1
  • Typically used in mixes
 
     

 

Hard phase overlay welding powders

Particle size: 400/63 µm
Chemistry: -
Powder type: -
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Chromium boride
  • Typically used in mixes
 
     

 

Hard phase overlay welding powders

Particle size: 400/63 µm
Chemistry: -
Powder type: -
Typical deposition techniques: Laser cladding, plasma transferred arc (PTA)

     
 

Remarks:

  • Chromium diboride
  • 1900-2300 HV0.1
  • Typically used in mixes
 
     

 

Surfit® hard phase powders

Carbide mixes overlay welding powders

Höganäs offers a wide range of Surfit powder mixes with Ni self-fluxing (SF) alloys and tungsten carbides.

With a broad portfolio of Ni self-fluxing alloys in combination with different tungsten carbides, we tailor mixes to meet the application requirements.

  • Ni self-fluxing alloys
  • Amperweld® Tungsten carbides
    • Amperweld CTC - Cast Tungsten Carbides
    • Amperweld SCTC - Spherical Cast tungsten carbide
    • Amperweld MTC - Macroline Tungsten Carbide
  • Amperit® Tungsten carbide cobalt
    • Amperit 519 WC-Co 88-12
    • Amperit 526 WC-Co 83-17

Please contact your local Höganäs sales representative to find a matching Surfit mix for your application.

Particle size: -
Chemistry: 
Powder type: Blended
Typical deposition techniques: Flame spraying, HVOF, laser cladding, plasma transferred arc (PTA), powder welding

 

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