Medium carbon ferrochrome
Ferrochrome is an iron alloy consisting of chromium and iron. Ferrochrome is an important alloying additive in steelmaking.
Specification and particle size: natural lump, 10-100mm, powder or customised according to customers' requirements.
Packing: one metric tonne in a big bag, or according to customer's requirement
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Category |
Brand |
Chemical Composition |
Cr |
C |
Si |
P |
S |
||||
1 |
2 |
1 |
2 |
1 |
2 |
1 |
2 |
||||
Low carbon ferrochrome |
|
Cr |
≥ |
≤ |
|||||||
FeCr69C0.25 |
63-75 |
60 |
52 |
0.25 |
1.5 |
3.0 |
0.03 |
0.06 |
0.025 |
0.05 |
|
FeCr55C0.25 |
63-75 |
60 |
52 |
0.25 |
2.0 |
3.0 |
0.04 |
0.06 |
0.03 |
0.05 |
|
FeCr69C0.50 |
63-75 |
60 |
52 |
0.50 |
1.5 |
3.0 |
0.03 |
0.06 |
0.025 |
0.05 |
|
FeCr55C0.50 |
63-75 |
60 |
52 |
0.50 |
2.0 |
3.0 |
0.04 |
0.06 |
0.03 |
0.05 |
|
Medium carbon ferrochrome |
FeCr69C1.0 |
63-75 |
60 |
52 |
1.0 |
1.5 |
3.0 |
0.03 |
0.06 |
0.025 |
0.05 |
FeCr55C1.0 |
63-75 |
60 |
52 |
1.0 |
2.5 |
3.0 |
0.04 |
0.06 |
0.03 |
0.05 |
|
FeCr69C2.0 |
63-75 |
60 |
52 |
2.0 |
1.5 |
3.0 |
0.03 |
0.06 |
0.025 |
0.05 |
|
FeCr55C2.0 |
63-75 |
60 |
52 |
2.0 |
2.5 |
3.0 |
0.04 |
0.06 |
0.03 |
0.05 |
|
FeCr69C4.0 |
63-75 |
60 |
52 |
4.0 |
1.5 |
3.0 |
0.03 |
0.06 |
0.025 |
0.05 |
|
FeCr55C4.0 |
63-75 |
60 |
52 |
4.0 |
2.5 |
3.0 |
0.04 |
0.06 |
0.03 |
0.05 |
|
High carbon ferrochrome |
FeCr67C6.0 |
62-72 |
60 |
52 |
6.0 |
3.0 |
5.0 |
0.03 |
0.06 |
0.04 |
0.06 |
FeGr55C6.0 |
62-72 |
60 |
52 |
6.0 |
3.0 |
5.0 |
0.04 |
0.06 |
0.04 |
0.06 |
|
FeCr67C9.5 |
62-72 |
60 |
52 |
9.5 |
3.0 |
5.0 |
0.03 |
0.06 |
0.04 |
0.06 |
|
FeCr55C10.0 |
62-72 |
60 |
52 |
10 |
3.0 |
5.0 |
0.04 |
0.06 |
0.04 |
0.06 |
Ferrochrome is an alloy of chromium and iron. It is an important alloying additive in steelmaking. High-carbon ferrochrome is produced from chromite and silicon as a slag flux. It is a solid solution of chromium, iron, and carbon, a complex compound of these three elements. It is one of the most common ferrochrome alloys and features high strength, corrosion resistance, wear resistance, high-temperature resistance, and oxidation resistance.
About Medium-Carbon Ferrochrome
When using chromium ore concentrate to produce medium-carbon ferrochrome, the refining slag has a high viscosity and melting point, necessitating high smelting temperatures. This results in high power consumption, short furnace lining life, and difficulty in reducing carbon content. Using oxygen to refine medium-carbon ferrochrome offers significant advantages, including high productivity, low cost, and high recovery rates.
Specifications and Particle Sizes: Natural lumps, 10-100mm, powder, or custom sizes available.
Packaging: One metric ton in a large bag, or custom sizes available.
Applications of Medium-Carbon Ferrochrome
Adding chromium to steel significantly improves its oxidation resistance and corrosion resistance. Chromium is contained in many steels that possess special physical and chemical properties. Medium- and low-carbon ferrochrome is used to produce medium- and low-carbon structural steels, carburizing steels, gears, high-pressure blower blades, valve plates, etc. Micro-carbon ferrochrome is used to produce stainless steel, acid-resistant steel, heat-resistant steel, and electric heating alloys.
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