An energy-saving smelting process for preparing high-chromium balls by using waste chromium-containing steel balls and the high-chromium balls produced
A technology of chromium-containing steel and high-chromium steel balls, which is applied in the energy-saving smelting process and the field of high-chromium balls produced, can solve the problems of waste, elimination, and decline in the effectiveness of grinding parts, and achieve reduced energy consumption, low deformation resistance, cost reduction effect
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Embodiment 1
[0020] An energy-saving smelting process for preparing high-chromium steel balls by using waste chromium-containing steel balls, comprising the following steps:
[0021] (1) putting waste chromium-containing steel balls into an electrolytic cell for wet separation to obtain separated alloy materials;
[0022] (2) the component content of C, Si, Mn, Nb, Ni, Al, Cu and Cr in the alloy material that detection step (1) obtains;
[0023] (3) Add ferromolybdenum, waste quick gray iron, chromium steel in 2-4 times, and adjust the content of each component in the alloy material as follows: C≤0.025wt%, Si:0.12wt%, Mn:0.36wt%, Nb: 0.08wt%, Ni:0.29wt%, Al:0.01wt%, Cu:0.52wt%, Cr:10.4wt%, the balance is Fe and unavoidable impurities;
[0024] (4) Use a smelting furnace to smelt the alloy material. When smelting, blow oxygen-enriched air into the furnace, and blow O in the gas. 2 Flow rate and feed rate meet 250-320Nm 3 / t, the smelting temperature is 1485-1550°C, after desulfurization,...
Embodiment 2
[0027] An energy-saving smelting process for preparing high-chromium steel balls by using waste chromium-containing steel balls, comprising the following steps:
[0028] (1) putting waste chromium-containing steel balls into an electrolytic cell for wet separation to obtain separated alloy materials;
[0029] (2) the component content of C, Si, Mn, Nb, Ni, Al, Cu and Cr in the alloy material that detection step (1) obtains;
[0030] (3) Add ferromolybdenum, waste quick gray iron, chromium steel in 2-4 times, adjust the content of each component in the alloy material as follows: adjust the content of each component in the alloy material as follows: C: 0.025wt%, Si: 0.18wt% %, Mn: 0.33wt%, Nb: 0.1wt%, Ni: 0.25wt%, Al: 0.02wt%, Cu: 0.42wt%, Cr: 10.9wt%, the balance is Fe and unavoidable impurities;
[0031] (4) Use a smelting furnace to smelt the alloy material. When smelting, blow oxygen-enriched air into the furnace, and blow O in the gas. 2 Flow rate and feed rate meet 250-3...
Embodiment 3
[0034] An energy-saving smelting process for preparing high-chromium steel balls by using waste chromium-containing steel balls, comprising the following steps:
[0035] (1) putting waste chromium-containing steel balls into an electrolytic cell for wet separation to obtain separated alloy materials;
[0036] (2) the component content of C, Si, Mn, Nb, Ni, Al, Cu and Cr in the alloy material that detection step (1) obtains;
[0037] (3) Add ferromolybdenum, waste quick gray iron, chromium steel in 2-4 times, and adjust the content of each component in the alloy material as follows: C≤0.025wt%, Si:0.22wt%, Mn:0.28wt%, Nb: 0.15wt%, Ni: 0.12wt%, Al: 0.05wt%, Cu: 0.16wt%, Cr: 12.2wt%, the balance is Fe and unavoidable impurities;
[0038] (4) Use a smelting furnace to smelt the alloy material. When smelting, blow oxygen-enriched air into the furnace, and blow O in the gas. 2 Flow rate and feed rate meet 250-320Nm 3 / t, the smelting temperature is 1485-1550°C, after desulfurizat...
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