Preparation method of pipe powder for nodular cast iron and application of pipe powder
A technology of ductile cast iron and pipe mold powder, which is applied in the field of cast iron, can solve the problems of unreasonable particle size, difficult recovery of fine powder, high processing cost, etc., and achieve the effect of reducing the tendency of whitening, increasing the number of graphite balls, and reducing the tendency of whitening
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Embodiment 1
[0026] Embodiment 1 (preparation pipe mold powder)
[0027] By weight percentage, 62% Si, 10% Ba, 2% Ca, 1.8% Al and 22.7% Fe are mixed evenly and placed in an electric furnace, remelted and cast into blocks, and the blocks are crushed into An alloy powder with an average particle diameter of 10 μm; the obtained above-mentioned alloy powder and an average particle diameter of 10 μm in a weight percentage of 1.5% Fe 3 o 4 Add the powder into the mixing container and mix it with alloy powder and Fe 3 o 4 The sodium silicate solution with 5% of the total weight of the powder is added together into a roller compacting device to form agglomerates, and finally crushed to an average particle size of 50 μm.
Embodiment 2
[0028] Embodiment 2 (preparation pipe mold powder)
[0029] By weight percentage, 70% Si, 3% Ba, 1% Ca, 0.8% Al and 24.7% Fe are mixed evenly and placed in an electric furnace, remelted and poured into blocks, and the blocks are crushed into An alloy powder with an average particle diameter of 30 μm; the obtained above-mentioned alloy powder and an average particle diameter of 30 μm in a weight percentage of 0.5% Fe 3 o 4 Add the powder into the mixing container and mix it with alloy powder and Fe 3 o 4 The sodium silicate solution with 3% of the total weight of the powder is added together into a roller compacting device to form agglomerates, and finally crushed to an average particle size of 100 μm.
Embodiment 3
[0030] Embodiment 3 (preparation pipe mold powder)
[0031] By weight percentage, 65% Si, 8% Ba, 1.6% Ca, 1% Al and 23.44% Fe are mixed evenly and placed in an electric furnace, remelted and cast into blocks, and the blocks are crushed into An alloy powder with an average particle diameter of 20 μm; the obtained above-mentioned alloy powder and an average particle diameter of 20 μm in a weight percentage of 1% Fe 3 o 4 Add the powder into the mixing container and mix it with alloy powder and Fe 3 o 4 The sodium silicate solution with 3% of the total weight of the powder is added together into a roller compacting device to form agglomerates, and finally crushed to an average particle size of 60 μm.
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