Nano-scale wolfram carbine composite powder and method of manufacturing the same
A technology of composite powder and tungsten carbide, which is applied in the field of preparation of nanoscale tungsten carbide composite powder
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Embodiment 1
[0030] Dissolve 81% powdered ammonium paratungstate, 18% nano-carbon black and 0.5% powdered ammonium metavanadate, 80g in total, in 500ml deionized water (70-100°C), stir to obtain a uniform mixture The solution is placed in a drying oven, heated at 100-300° C. for 1-2 hours, dried at 50-100° C. for 1-5 hours, and finally the precursor powder is obtained. Put the precursor powder in a high-temperature reaction furnace, and under vacuum conditions, at 1000-1200°C for 30-60 minutes, prepare nano-WC-V with an average particle size of 8 C 7 powder.
Embodiment 2
[0032] Dissolve 85% powdered ammonium metatungstate, 16% nano-carbon black and 1.2% powdered vanadium oxalate, 165g in total, in 1000ml deionized water (70-100°C), stir to obtain a mixed To obtain a uniform solution, put the solution in a drying oven, heat it at 100-300° C. for 1-2 hours, and dry it at 50-100° C. for 1-5 hours, and finally obtain the precursor powder. Place the precursor powder in a high-temperature reaction furnace, under the protection of argon, at 1000-1200°C for 30-60 minutes, to prepare nano-WC-V with an average particle size of 8 C 7 powder.
Embodiment 3
[0034]Dissolve 90% powdered ammonium paratungstate, 20% nano-carbon black and 0.8% powdered ammonium dichromate, 85g in total, in 500ml deionized water (70-100°C), stir to obtain a uniform mixture The solution is placed in a drying oven, heated at 100-300° C. for 1-2 hours, dried at 50-100° C. for 1-5 hours, and finally the precursor powder is obtained. Put the precursor powder in a high-temperature reaction furnace, and under vacuum conditions, at 1000-1200°C for 30-60 minutes, prepare nano-WC-Cr with an average particle size of 3 C 2 powder.
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