Wear plates






HIGH CHROME CARBIDE WEAR PLATE
Steelhard-T
®

HIGH CHROME CARBIDE WEAR PLATE
Steelhard-L®

HIGH CHROME CARBIDE WEAR PLATE
Steelhard-S®

HIGH TUNGSTEN CARBIDE WEAR PLATE
Steelhard-W®



 



 



 




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High Chrome Carbide overlay plate

Steelhard-T®

 

 

 

Steelhard-T® – Wear resistant plate is a unique chromium carbide overlay on a mild steel carbon base plate.

It is designed for areas with high abrasion.

It can be formed, rolled and cut to your specific needs.

 

Base plate S235JR-EN 10025
Thickness tolerances  EN 10029
Cladding Steelhard-T®  DIN 8555, groupe 10, flux cored wire +FeCr
Arc welding process Open-Arc – DIN EN ISO 5817-2.12D
Microstructure hyper eutectique avec M7C3 carbures de chrome primaire dans une matrice austénitique
Thickness tolerances -0/+1mm
Flatness tolerances 4 mm/M
Macro hardness 60-67HRc à 20°C
Hardness tolerances

-1,5/+1,5 HRc

Maximum thickness in 1 layer 3 mm
Number of layers 1
High abrasion resistance in temperature 400 °C
Applications abrasion and erosion

 

Steelhard-T® – Wear resistant plate can be manufactured in various thicknesses and special run thicknesses on request.

 

 

 

 

Dimensions
Proprietes
Surface
Mechanical processing

 

 

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High Chrome Carbide overlay plate

 

 

Steelhard-L®

 

La tôle anti-usure se compose d'un alliage à haute teneur en carbures de chrome déposée sur un acier doux.

Elle est conçue pour des applications d'abrasion et d'érosion.

Elle peut être formée, roulée et découpée suivant vos besoins.

 

Base plate S235JR, S355J2, P265GH, 16Mo3, 13CrMo44, QSTE380TM, S690QL1, S700MC, 1.4301, 1.4306, 1.4571, 1.4828, 1.4837, 1.4841
Thickness tolerances EN 10029
Cladding Steelhard-S®  DIN 8555 

Flux cored wire

Arc welding process Open-Arc – DIN EN ISO 5817-2.12D
Microstructure hyper eutectique avec M7C3 carbures de chrome primaire dans une matrice austénitique eutectique.
Thickness tolerances -0/+1mm
Flatness tolerances 4 mm/M
Macro hardness 60-67HRc à 20°C
Hardness tolerances

-1,5/+1,5 HRc

Maximum thickness in 1 layer 7 mm
Number of layers 3 x 5 mm
High abrasion resistance in temperature 400 °C
Applications abrasion and impact

 

 
Dimensions
Proprietes
Surface
Mechanical processing

 

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High Chrome Carbide overlay plate

 

Steelhard-S®

 

Steelhard-S® – Wear resistant plate is a unique chromium carbide overlay on a mild steel carbon base plate.

It is designed for areas with high impact and abrasion.

It can be formed, rolled and cut to your specific needs.

 

 

Base plate S235JR, S355J2, P265GH, 16Mo3, 13CrMo44, QSTE380TM, S690QL1, S700MC, 1.4301, 1.4306, 1.4571, 1.4828, 1.4837, 1.4841
Thickness tolerances EN 10029
Cladding Steelhard-S®  DIN 8555 

Solid wire + Fe alloys, flux cored wire + Fe alloys

Arc welding process Open-Arc – DIN EN ISO 5817-2.12D
Microstructure hyper eutectique avec M7C3 carbures de chrome primaire dans une matrice austénitique eutectique.
Thickness tolerances -0/+1mm
Flatness tolerances 4 mm/M
Macro hardness 60-67HRc à 20°C
Hardness tolerances

-1,5/+1,5 HRc

Maximum thickness in 1 layer 7 mm
Number of layers 3 x 5 mm
High abrasion resistance in temperature 400 °C
Applications abrasion, erosion and impact

 

Dimensions
Proprietes
Surface
Mechanical processing

 

 

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High Tungsten Carbide overlay plate

 

Steelhard-W®

 

Steelhard-W® – Wear resistant plate is developed for the most severe wear conditions.

This plate can withstand extreme heat while resisting abrasion.

We can manufacture this plate in a variety of thicknesses.

Steelhard-W® can be cut, bent, rolled, welded, bolted

 

Base plate S235JR
Thickness tolerances EN 10029
Cladding Steelhard-W®  40% NiBSi  60% WSC
Arc welding process PTA (Plasma Transferred Arc)
Microstructure 

The dillution is max 5%.  

Thickness tolerances -0/+0,5
Flatness tolerances 4 mm/M
Macro hardness NiBSi 50-55 HRc
Micro-Hardness 2340 HV 0,4
Maximum thickness in 1 layer 6 mm
Number of layers 1
High abrasion resistance in temperature > 800° C

Applications

extreme conditions of abrasion, erosion and temperature

 

Dimensions
Proprietes
Surface
Mechanical processing

 

 

 

 

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