Nitrided Low Carbon Ferro Chrome
FeCr Nitrided Low Carbon Ferro Chrome Specification
|
Commodity Name |
Grade |
Cr |
N% |
C |
Si |
P |
S |
|
≥% |
≤% |
||||||
|
Nitrided Low Carbon Ferro Chrome |
FeNCr3 |
60 |
8-10/3-5 |
0.03 |
1.5/1.0 |
0.03 |
0.03 |
|
65 |
|||||||
|
FeNCr6 |
60 |
8-10/3-5 |
0.06 |
1.5/1.0 |
0.03 |
0.03 |
|
|
65 |
|||||||
|
FeNCr10 |
60 |
8-10/3-5 |
0.10 |
1.5/1.0 |
0.03 |
0.03 |
|
Packaging details:
Packed in a 1MT big bag or as per your request
The 10kg/25kg waterproof bag contains a 1-ton large bag.
Size details:
Block shape: 10-50mm/10-60mm10-100mm/50-100mm/100-200mm or according to your requirements
Particles: 3-10mm/1-3mm/0-3mm or according to your requirements
Powder: 325 mesh or according to your requirements
Delivery time: Within 5 days under normal circumstances.
Port of departure: Tianjin/Shanghai/Guangzhou, etc.
Tags: Blank or Custom
Documents: PL, IN, BL, CO, test report, insurance certificate (as promised)
Nitrided Low Carbon Ferro Chrome information
Nitride low carbon ferrochromium is a unique alloy material that is widely used in the production of stainless steel, heat-resistant steel, alloy steel and other special steels. Nitrided LC ferrochrome can be used in the metallurgical industry to produce ferrochrome and metallic chromium. As a steel additive, nitrided low-carbon ferrochromium is used to produce various high-strength, corrosion-resistant, wear-resistant, heat-resistant, and oxidation-resistant special steels.
Applications of nitrided low carbon ferrochrome:
1. Nitrided low carbon ferrochromium can be used to produce ferrochrome and metallic chromium in the metallurgical industry.
2. Nitrided low-carbon FeCr is used as an additive in steel to produce various special steels with high strength, corrosion resistance, wear resistance, heat resistance and oxidation resistance.
Characteristics of nitrided low carbon ferrochrome:
1. In Cr-Ni stainless steel, Ni element can be partially replaced by N. Ferrochromium is characterized by stable N content, high density, and high element yield during the smelting process.
2. The effect of nitrogen in expanding the austenite zone is 30 times stronger than that of nickel. Ferrochromium nitride can partially replace nickel metal and reduce production costs.






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