Find your thermal spray powders with

Find your thermal spray powders with

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Vacuum plasma spraying (VPS) /low-pressure plasma spraying (LPPS) powders

Höganäs thermal spray powders for VPS/LPPS deposition technique.

Amperit® MCrAlY powders

MCrAlY (NiCrAlY) thermal spray powders

Particle size: 45/22 µm
Chemistry: Ni 22Cr 10Al 1Y 
Powder type: Gas atomised
Suitable for deposition techniques: HVOF, Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Stable at high temperatures in hot corrosive or oxidising environments
  • Used on turbine blades, etc.
 
     

 

MCrAlY (NiCrAlY) thermal spray powders

Particle size: 45/5 µm
Chemistry: Ni 22Cr 10Al 1Y 
Powder type: Gas atomised
Suitable for deposition techniques: HVOF, Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Stable at high temperatures in hot corrosive or oxidising environments
  • Used on turbine blades, etc.
 
     

 

MCrAlY (NiCrAlY) thermal spray powders

Particle size: 125/45 µm
Chemistry: Ni 22Cr 10Al 1Y 
Powder type: Gas atomised
Suitable for deposition techniques: Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Stable at high temperatures in hot corrosive or oxidising environments
  • Used on turbine blades, etc.
 
     

 

MCrAlY (CoNiCrAlY) thermal spray powders

Particle size: 45/22 µm
Chemistry: Co 32Ni 21Cr 8Al 0.5Y 
Powder type: Gas atomised
Suitable for deposition techniques: HVOF, Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Correspond to GE B50AG5 and Safran LA657 PE1
  • Stable at high temperatures in hot corrosive or oxidising environments
  • Used as bond coats for TBCs, etc.
 
     

 

MCrAlY (CoNiCrAlY) thermal spray powders

Particle size: 90/45 µm
Chemistry: Co 32Ni 21Cr 8Al 0.5Y 
Powder type: Gas atomised
Suitable for deposition techniques: Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Stable at high temperatures in hot corrosive or oxidising environments
  • Used as bond coats for TBCs, etc.
 
     

 

MCrAlY (CoNiCrAlY) thermal spray powders

Particle size: 125/45 µm
Chemistry: Co 32Ni 21Cr 8Al 0.5Y 
Powder type: Gas atomised
Suitable for deposition techniques: Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Stable at high temperatures in hot corrosive or oxidising environments
  • Used as bond coats for TBCs, etc.
 
     

 

MCrAlY (CoNiCrAlY) thermal spray powders

Particle size: 38/10 µm
Chemistry: Co 32Ni 21Cr 8Al 0.5Y 
Powder type: Gas atomised
Suitable for deposition techniques: Cold spraying, HVOF, Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Stable at high temperatures in hot corrosive or oxidising environments
  • Used as bond coats for TBCs, etc.
 
     

 

MCrAlY (CoNiCrAlY) thermal spray powders

Particle size: 90/53 µm
Chemistry: Co 32Ni 21Cr 8Al 0.5Y 
Powder type: Gas atomised
Suitable for deposition techniques: HVOF, Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Stable at high temperatures in hot corrosive or oxidising environments
  • Used as bond coats for TBCs, etc.
 
     

 

MCrAlY (NiCoCrAlYHfSi) thermal spray powders

Particle size: 45/22 µm
Chemistry: Ni 22Co 17Cr 12.5Al 0.6Y 0.2Hf 0.4Si 
Powder type: Gas atomised
Suitable for deposition techniques: HVOF, Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Stable at high temperatures in hot corrosive or oxidising environments
  • Used as bond coats for TBCs, etc.
 
     

 

MCrAlY (NiCoCrAlYHfSi) thermal spray powders

Particle size: 90/45 µm
Chemistry: Ni 22Co 17Cr 12.5Al 0.6Y 0.2Hf 0.4Si 
Powder type: Gas atomised
Suitable for deposition techniques: Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Stable at high temperatures in hot corrosive or oxidising environments
  • Used as bond coats for TBCs, etc.
 
     

 

MCrAlY (NiCoCrAlYHfSi) thermal spray powders

Particle size: 125/45 µm
Chemistry: Ni 22Co 17Cr 12.5Al 0.6Y 0.2Hf 0.4Si 
Powder type: Gas atomised
Suitable for deposition techniques: Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Stable at high temperatures in hot corrosive or oxidising environments
  • Used as bond coats for TBCs, etc.
 
     

 

MCrAlY (NiCoCrAlYHfSi) thermal spray powders

Particle size: 38/10 µm
Chemistry: Ni 22Co 17Cr 12.5Al 0.6Y 0.2Hf 0.4Si 
Powder type: Gas atomised
Suitable for deposition techniques: HVOF, Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Stable at high temperatures in hot corrosive or oxidising environments
  • Used as bond coats for TBCs, etc.
 
     

 

MCrAlY (NiCoCrAlY) thermal spray powders

Particle size: 45/22 µm
Chemistry: Ni 23Co 17Cr 12.5Al 0.5Y 
Powder type: Gas atomised
Suitable for deposition techniques: Cold spraying, HVOF, Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Stable at high temperatures in hot corrosive or oxidising environments
  • Used on turbine blades, etc.
 
     

 

MCrAlY (NiCoCrAlY) thermal spray powders

Particle size: 45/15 µm
Chemistry: Ni 23Co 17Cr 12.5Al 0.5Y 
Powder type: Gas atomised
Suitable for deposition techniques: Cold spraying, HVOF, Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Stable at high temperatures in hot corrosive or oxidising environments
  • Used on turbine blades, etc.
 
     

 

MCrAlY (NiCoCrAlTaReY) thermal spray powders

Particle size: 45/22 µm
Chemistry: Ni 18Cr 10Co 6.5Al 6Ta 2Re 0.3Y 1Si 0.5Hf 
Powder type: Gas atomised
Suitable for deposition techniques: HVOF, Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Ta and Re containing MCrAlY for improved hot gas corrosion resistance
  • MCrAlY for stationary gas turbine applications
  • Availability only to OEM approved users
 
     

 

MCrAlY (NiCoCrAlTaReY) thermal spray powders

Particle size: 38/15 µm
Chemistry: Ni 18Cr 10Co 6.5Al 6Ta 2Re 0.3Y 1Si 0.5Hf 
Powder type: Gas atomised
Suitable for deposition techniques: HVOF, Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Ta and Re containing MCrAlY for improved hot gas corrosion resistance
  • MCrAlY for stationary gas turbine applications
  • Availability only to OEM approved users
 
     

 

Amperit® pure metals, alloys & other material powders

Tungsten (W) thermal spray powders

Particle size: 45/22 µm
Chemistry: W pure
Powder type: Sintered
Suitable for deposition techniques: 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
 
     

 

Tungsten (W) thermal spray powders

Particle size: 90/45 µm
Chemistry: W pure
Powder type: Sintered
Suitable for deposition techniques: 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
 
     

 

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: 90/45 µm
Chemistry: Ta pure
Powder type: Fused and crushed
Suitable for deposition techniques: Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Corrosion protection for chemical equipment against acids
 
     

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

Tantalum (Ta) thermal spray powders

Particle size: 45/15 µm
Chemistry: Ta pure
Powder type: Fused and crushed
Suitable for deposition techniques: Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • 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: 90/16 µm
Chemistry: Ti pure
Powder type: Fused and crushed
Suitable for deposition techniques: Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Good corrosion resistance against salt water, Cl containing solutions and oxidising acid solutions
  • High purity
  • Conforms to ASTM F-1580
  • Material for biomedical applications
 
     

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

Titanium (Ti) thermal spray powders

Particle size: 125/90 µm
Chemistry: Ti pure
Powder type: Fused and crushed
Suitable for deposition techniques: Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Good corrosion resistance against salt water, Cl containing solutions and oxidising acid solutions
  • High purity
  • Conforms to ASTM F-1580
  • Material for biomedical applications
 
     

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

Titanium (Ti) thermal spray powders

Particle size: 355/200 µm
Chemistry: Ti pure
Powder type: Fused and crushed
Suitable for deposition techniques: Atmospheric plasma spraying (APS), VPS/LPPS

     
 

Remarks:

  • Good corrosion resistance against salt water, Cl containing solutions and oxidising acid solutions
  • High purity
  • Conforms to ASTM F-1580
  • Material for biomedical applications
 
     

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.

Titanium (Ti) thermal spray powders

Particle size: 125/90 µm
Chemistry: Ti pure
Powder type: Fused and crushed
Suitable for deposition techniques: 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.

Amperit® tungsten (W) based powders

Tungsten (W) thermal spray powders

Particle size: 45/22 µm
Chemistry: W pure
Powder type: Sintered
Suitable for deposition techniques: 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
 
     

 

Tungsten (W) thermal spray powders

Particle size: 90/45 µm
Chemistry: W pure
Powder type: Sintered
Suitable for deposition techniques: 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
 
     

 

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
 
     

 

Amperit® titanium carbide (TiC) powders

Titanium carbides (TiC) thermal spray powders

Particle size: 45/5 µm
Chemistry: TiC pure
Powder type: Sintered and crushed
Suitable for deposition techniques: VPS/LPPS

 

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