Find your thermal spray powders with

Find your thermal spray powders with

PowderFinder

Cold spraying powders

Höganäs thermal spray powders for cold spraying deposition technique.

Amperit® nickel (Ni) based powders

Nickel (Ni) thermal spray powders

Particle size: 45/22 µm
Chemistry: Ni pure
Powder type: Water atomised
Suitable for deposition techniques: Cold spraying,HVOF, Atmospheric plasma spraying (APS)

     
 

Remarks:

  • Good corrosion protection
  • Repair and bond coat for Ni-based alloys
 
     

Hazards identification in advertising (REGULATION (EC) No 1272/2008 article 48): Skin sens. 1; Eye irrit. 2; Aquatic chronic 3; Carc. 2; STOT RE 1.

Nickel (Ni) thermal spray powders

Particle size: 45/22 µm
Chemistry: Ni pure
Powder type: Gas atomised
Suitable for deposition techniques: Cold spraying, HVOF, HVAF, Atmospheric plasma spraying (APS)

     
 

Remarks:

  • Repair and build-up for Ni-based alloy components
 
     

Hazards identification in advertising (REGULATION (EC) No 1272/2008 article 48): Skin sens. 1; Eye irrit. 2; Aquatic chronic 3; Carc. 2; STOT RE 1.

Nickel (Ni) thermal spray powders

Particle size: 35/15 µm
Chemistry: Ni pure
Powder type: Gas atomised
Suitable for deposition techniques: Cold spraying, HVOF, HVAF, Atmospheric plasma spraying (APS)

     
 

Remarks:

  • Repair and build-up for Ni-based alloy components
 
     

Hazards identification in advertising (REGULATION (EC) No 1272/2008 article 48): Skin sens. 1; Eye irrit. 2; Aquatic chronic 3; Carc. 2; STOT RE 1.

Nickel based (NiCr) thermal spray powders

Particle size: 45/22 µm
Chemistry: Ni 20Cr
Powder type: Water atomised
Suitable for deposition techniques: Cold spraying, HVOF, atmospheric plasma spraying (APS)

     
 

Remarks:

  • Oxidation and corrosion resistant
  • Good machinability
  • Used for repair, bond coat and corrosion protection
 
     

 

Nickel based (NiCr) thermal spray powders

Particle size: 45/22 µm
Chemistry: Ni 20Cr
Powder type: Water atomised
Suitable for deposition techniques: Cold spraying, Atmospheric plasma spraying (APS)

     
 

Remarks:

  • Oxidation and corrosion resistant
  • Good machinability
  • Used for repair, bond coat and corrosion protection
 
     

 

Nickel based (NiCr) thermal spray powders

Particle size: 45/22 µm
Chemistry: Ni 20Cr
Powder type: Gas atomised
Suitable for deposition techniques: Cold spraying, HVOF, atmospheric plasma spraying (APS)

     
 

Remarks:

  • Spherical alternative to Amperit 250
  • Better flowability
 
     

 

Nickel based (NiCr) thermal spray powders

Particle size: 45/22 µm
Chemistry: Ni 20Cr
Powder type: Gas atomised
Suitable for deposition techniques: Cold spraying, Atmospheric plasma spraying (APS)

     
 

Remarks:

  • Spherical alternative to Amperit 250
  • Better flowability
 
     

 

Nickel based (NiCrMoNb) thermal spray powders

Particle size: 90/45 µm
Chemistry: Ni 21Cr 9Mo 4Nb
Powder type: Gas atomised
Suitable for deposition techniques: Atmospheric plasma spraying (APS), cold spraying

     
 

Remarks:

  • Excellent oxidation and corrosion resistance
  • Used in boilers and in chemical industry
  • Ni Superalloy 625
 
     

 

Nickel based (NiCrMoNb) thermal spray powders

Particle size: 45/15 µm
Chemistry: Ni 21Cr 9Mo 4Nb
Powder type: Gas atomised
Suitable for deposition techniques: HVOF, HVAF, atmospheric plasma spraying (APS), cold spraying

     
 

Remarks:

  • Excellent oxidation and corrosion resistance
  • Used in boilers and in chemical industry
  • Ni Superalloy 625
 
     

 

Nickel based (NiCrMoNb) thermal spray powders

Particle size: 53/20 µm
Chemistry: Ni 21Cr 9Mo 4Nb
Powder type: Gas atomised
Suitable for deposition techniques: HVOF, atmospheric plasma spraying (APS), cold spraying

     
 

Remarks:

  • Excellent oxidation and corrosion resistance
  • Used in boilers and in chemical industry
  • Ni Superalloy 625
 
     

 

Nickel based (NiCrMoNbAlTi) thermal spray powders

Particle size: 53/20 µm
Chemistry: Ni 19Cr 3.1Mo 5.1Nb 0.6Al 0.9Ti     
Powder type: Gas atomised
Suitable for deposition techniques: HVOF, atmospheric plasma spraying (APS), cold spraying

     
 

Remarks:

  • Excellent for corrosion resistant coatings
  • Hardenable
  • Very good for high temperature applications
  • Used in turbines and chemical equipment
  • Ni Superalloy 718
 
     

 

Amperit® pure metals, alloys & other material powders

Tungsten (W) thermal spray powders

Particle size: 25/5 µm
Chemistry: W pure
Powder type: Sintered
Suitable for deposition techniques: Cold spraying, VPS/LPPS

     
 

Remarks:

  • Corrosion resistant against acids
  • Good high temperature stability in non-oxidising atmospheres
  • High melting point
  • Good adhesion to graphite, alumina and quartz
 
     

 

Tantalum (Ta) thermal spray powders

Particle size: 30/10 µm
Chemistry: Ta pure
Powder type: Special grade
Suitable for deposition techniques: Cold spraying

     
 

Remarks:

  • Lower oxygen content than Amperit 150
  • Dense coatings for highest corrosion protection against sulfuric acid
  • Improved mechanical properties
  • High deposition efficiency
  • Corrosion protection for chemical equipment against acids
 
     

Hazards identification in advertising (REGULATION (EC) No 1272/2008 article 48): Flam. Sol 1.

Titanium (Ti) thermal spray powders

Particle size: <63 µm
Chemistry: Ti pure
Powder type: Fused and crushed
Suitable for deposition techniques: Cold spraying, Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Good corrosion resistance against salt water, Cl containing solutions and oxidising acid solutions
  • Material for biomedical applications
 
     

Hazards identification in advertising (REGULATION (EC) No 1272/2008 article 48): Flam. Sol 1.

Niobium (Nb) thermal spray powders

Particle size: 45/5 µm
Chemistry: Nb pure
Powder type: Fused and crushed
Suitable for deposition techniques: Cold spraying, VPS/LPPS

     
 

Remarks:

  • Corrosion resistant against several acids
  • Good high temperature stability in non-oxidising atmospheres
 
     

Hazards identification in advertising (REGULATION (EC) No 1272/2008 article 48): Flam. Sol 1.

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