Nickel iron is a nickel iron alloy with a nickel content of 20% -60%. The melting point of nickel iron is 1430-1480 degrees, and the density is 8.1-8.4. Mainly used as a nickel additive in steelmaking and cast iron. According to international standards (ISO), nickel iron is divided into FeNi20 (15%~25% Ni), FeNi30 (25%~35% Ni), FeNi40 (35%~45% Ni), and FeNi50 (45%~60% Ni) based on its nickel content. It is further divided into high carbon (1.0%~2.5% C), medium carbon (0.030%~1.0% C), and low carbon (<0.03% C); Low phosphorus (<0.02% P) and high phosphorus (<0.030% P) nickel iron.
Nickel iron is a nickel iron alloy with a nickel content of 20% -60%. The melting point of nickel iron is 1430-1480 degrees, and the density is 8.1-8.4. Mainly used as a nickel additive in steelmaking and cast iron. According to international standards (ISO), nickel iron is divided into FeNi20 (15%~25% Ni), FeNi30 (25%~35% Ni), FeNi40 (35%~45% Ni), and FeNi50 (45%~60% Ni) based on its nickel content. It is further divided into high carbon (1.0%~2.5% C), medium carbon (0.030%~1.0% C), and low carbon (<0.03% C); Low phosphorus (<0.02% P) and high phosphorus (<0.030% P) nickel iron.
Nickel iron is a nickel iron alloy with a nickel content of 20% -60%. The melting point of nickel iron is 1430-1480 degrees, and the density is 8.1-8.4. Mainly used as a nickel additive in steelmaking and cast iron. According to international standards (ISO), nickel iron is divided into FeNi20 (15%~25% Ni), FeNi30 (25%~35% Ni), FeNi40 (35%~45% Ni), and FeNi50 (45%~60% Ni) based on its nickel content. It is further divided into high carbon (1.0%~2.5% C), medium carbon (0.030%~1.0% C), and low carbon (<0.03% C); Low phosphorus (<0.02% P) and high phosphorus (<0.030% P) nickel iron.
Nickel iron is a nickel iron alloy with a nickel content of 20% -60%. The melting point of nickel iron is 1430-1480 degrees, and the density is 8.1-8.4. Mainly used as a nickel additive in steelmaking and cast iron. According to international standards (ISO), nickel iron is divided into FeNi20 (15%~25% Ni), FeNi30 (25%~35% Ni), FeNi40 (35%~45% Ni), and FeNi50 (45%~60% Ni) based on its nickel content. It is further divided into high carbon (1.0%~2.5% C), medium carbon (0.030%~1.0% C), and low carbon (<0.03% C); Low phosphorus (<0.02% P) and high phosphorus (<0.030% P) nickel iron.
Nickel iron is a nickel iron alloy with a nickel content of 20% -60%. The melting point of nickel iron is 1430-1480 degrees, and the density is 8.1-8.4. Mainly used as a nickel additive in steelmaking and cast iron. According to international standards (ISO), nickel iron is divided into FeNi20 (15%~25% Ni), FeNi30 (25%~35% Ni), FeNi40 (35%~45% Ni), and FeNi50 (45%~60% Ni) based on its nickel content. It is further divided into high carbon (1.0%~2.5% C), medium carbon (0.030%~1.0% C), and low carbon (<0.03% C); Low phosphorus (<0.02% P) and high phosphorus (<0.030% P) nickel iron.
Ferroniobium is an iron alloy composed mainly of niobium and iron. It also contains impurities such as aluminum, silicon, carbon, sulfur, and phosphorus. According to the niobium content of the alloy, it is divided into FeNb50, FeNb60, and FeNb70. The iron alloy produced from niobium tantalum ore contains tantalum, known as niobium tantalum iron.
Ferroniobium is an iron alloy composed mainly of niobium and iron. It also contains impurities such as aluminum, silicon, carbon, sulfur, and phosphorus. According to the niobium content of the alloy, it is divided into FeNb50, FeNb60, and FeNb70. The iron alloy produced from niobium tantalum ore contains tantalum, known as niobium tantalum iron.
Ferroniobium is an iron alloy composed mainly of niobium and iron. It also contains impurities such as aluminum, silicon, carbon, sulfur, and phosphorus. According to the niobium content of the alloy, it is divided into FeNb50, FeNb60, and FeNb70. The iron alloy produced from niobium tantalum ore contains tantalum, known as niobium tantalum iron.
Ferroniobium is an iron alloy composed mainly of niobium and iron. It also contains impurities such as aluminum, silicon, carbon, sulfur, and phosphorus. According to the niobium content of the alloy, it is divided into FeNb50, FeNb60, and FeNb70. The iron alloy produced from niobium tantalum ore contains tantalum, known as niobium tantalum iron.
Using si-mn alloy in steel making, the deoxidation products MNSIO₃ and MNSIO₄ have the melting points of 1270°C and 1327°C respectively, which have the advantages of low melting point, large particle size, easy floating and good deoxidation effect.
Specifications:Natural Block, 10-100mm, powdered or customized to customer requirements.
Packing: waterproof, woven bag ton packing (1000KG per pack)
Specifications:Natural Block, 10-100mm, powdered or customized to customer requirements.
Packing: waterproof, woven bag ton packing (1000KG per pack)
Using si-mn alloy in steel making, the deoxidation products MNSIO₃ and MNSIO₄ have the melting points of 1270°C and 1327°C respectively, which have the advantages of low melting point, large particle size, easy floating and good deoxidation effect.
Specifications:Natural Block, 10-100mm, powdered or customized to customer requirements.
Packing: waterproof, woven bag ton packing (1000KG per pack)
Specifications:Natural Block, 10-100mm, powdered or customized to customer requirements.
Packing: waterproof, woven bag ton packing (1000KG per pack)
Using si-mn alloy in steel making, the deoxidation products MNSIO₃ and MNSIO₄ have the melting points of 1270°C and 1327°C respectively, which have the advantages of low melting point, large particle size, easy floating and good deoxidation effect.
Specifications:Natural Block, 10-100mm, powdered or customized to customer requirements.
Packing: waterproof, woven bag ton packing (1000KG per pack)
Specifications:Natural Block, 10-100mm, powdered or customized to customer requirements.
Packing: waterproof, woven bag ton packing (1000KG per pack)