Nucleating agent containing rare earth and application of nucleating agent to spheroidal graphite cast iron smelting
An inoculant and rare earth technology, applied in the field of metallurgy, can solve problems such as damage to the structural consistency of castings, increase in graphite ball density, mechanical and stability effects, and achieve the effects of avoiding casting defects, improving fluidity, and promoting spheroidization
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Embodiment 1
[0018] The weight percent of the inoculant containing rare earth is: 0.001% of rare earth, 0.018% of lead, 0.008% of antimony, 60% of silicon, 8% of calcium, 5% of magnesium, 1.2% of aluminum, and the balance is iron and unavoidable trace elements.
Embodiment 2
[0020] The weight percent of the inoculant containing rare earth is: 0.003% of rare earth, 0.026% of lead, 0.012% of antimony, 64% of silicon, 6% of calcium, 3% of magnesium, 0.8% of aluminum, and the balance is iron and unavoidable trace elements.
Embodiment 3
[0022] The weight percent of said inoculant containing rare earth is: 0.003% of rare earth group, 0.02% of lead, 0.01% of antimony, 58% of silicon, 12% of calcium, 4% of magnesium, 1.5% of aluminum, and the balance is iron and unavoidable trace element.
[0023] In the smelting of nodular cast iron, the nodular cast iron is inoculated three times to increase the mechanical properties and stability of the nodular cast iron. The use of the inoculant is as follows:
[0024] The first inoculation treatment: when preparing for spheroidization, 70% of the spheroidizer in the spheroidization bag is covered with an inoculant with a mass equivalent to 0.17-0.24% of the molten iron and a particle size of 7-12 mm. The remaining 30% of the nodulizer is evenly covered on the nodulizer, and then the hot metal is discharged into the nodulizer bag to complete the first inoculation treatment;
[0025] The second inoculation treatment: when the molten iron in the nodularization ladle reaches h...
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