Method for manufacturing high-density vanadium-nitrogen alloy
A technology of vanadium-nitrogen alloy and production method, which is applied in the field of high-density production of vanadium-nitrogen alloy, can solve problems such as no mention of apparent density, and achieve the effects of stable product quality, improved absorption rate and high apparent density
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Embodiment 1
[0063]603kg of vanadium pentoxide (containing 55.2% of vanadium) and 182kg of activated carbon, and 60kg of PVP-containing 1% aqueous solution, add 6kg of nano-iron powder and carbonyl iron colloidal solution, stir evenly, briquetting, molding, in a nitrogen atmosphere Continuously feed into the external heating rotary kiln under nitrogen protection, pre-fire to 800°C under nitrogen protection, and collect the pre-fired block products cooled to room temperature under nitrogen protection at the discharge port. Then push it into an improved soft magnetic nitrogen atmosphere kiln and heat it to a temperature of 1260°C. In the dynamic continuous process, the material undergoes carbonization and nitriding reactions. The vanadium-nitrogen alloy product is obtained after a total residence time of 5 hours in the high temperature zone. The vanadium nitrogen alloy prepared by the present invention: V: 78.2%, N: 16.7%, C: 3.8%, silicon, phosphorus and aluminum are less than: 0.10%, and ...
Embodiment 2
[0065] 823kg of ammonium metavanadate with a vanadium content of 42.9% and 276kg of activated carbon, and 47kg of an aqueous solution containing 1% of PVP, add 7kg of ferric oxide, ferric oxide and ferroniobium alloy, stir evenly, briquetting, molding, Continuously feed into the external heating rotary kiln under nitrogen protection, pre-burn to 830°C under the protection of nitrogen, and collect the pre-fired block products cooled to room temperature under the protection of nitrogen at the discharge port. Then it is pushed into an improved soft magnetic nitrogen atmosphere kiln and heated to a temperature of 1370°C. In the dynamic continuous process, the material undergoes carbonization and nitriding reactions. The vanadium-nitrogen alloy product is obtained after a total residence time of 5 hours in the high temperature zone. The vanadium nitrogen alloy prepared by the present invention: V: 78.5%, N: 17.9%, C: 2.3%, silicon, phosphorus and aluminum are less than: 0.10%, and...
Embodiment 3
[0067] 367kg of vanadium pentoxide containing 55.6% of vanadium and 423kg of vanadium containing 42.9% ammonium metavanadate and the gac of 259kg, and 50kg containing PVP is 1% aqueous solution and 5kg containing camphor 3% acetone solution, add 8kg four Ferric oxide, ferric hydroxide colloid and niobium powder are mixed evenly and then pressed into blocks and formed. They are continuously added to the external heating rotary kiln under a nitrogen atmosphere, pre-fired to 900°C under the protection of nitrogen, and collected at the outlet and protected by nitrogen. The pre-fired block product cooled to room temperature. Then push it into an improved soft magnetic nitrogen atmosphere kiln and heat it to a temperature of 1430°C. In the dynamic continuous process, the material undergoes carbonization and nitriding reactions. The vanadium nitrogen alloy product is obtained after the total residence time in the high temperature zone is 3 hours. The vanadium nitrogen alloy prepare...
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