Method for producing molybdenum electrode bar by means of precision forging
A technology of molybdenum electrode and precision forging, which is applied in the field of material preparation, can solve the problems such as the mismatch between molybdenum billet specifications and forging methods, and achieve the effects of regular rod size, no surface cracks, and uniform quality
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Embodiment 1
[0022] The first step, the selection of molybdenum powder
[0023] The selected particle size is 4.5μm, and the loose ratio is 1.25g / cm 3 molybdenum powder as raw material;
[0024] The second step, pressing the billet
[0025] Put the molybdenum powder selected in the first step into a cylindrical mold, and then put the mold loaded with molybdenum powder into a cold isostatic press for pressing, and set the pressure of the cold isostatic press to 180Mpa. The pressure was maintained for another 8 minutes to obtain a molybdenum rod blank with a diameter of 68 mm;
[0026] The third step, sintering molybdenum billet
[0027] The molybdenum rod blank obtained in the second step is put into the intermediate frequency furnace, and the furnace is filled with hydrogen, and then sintered in stages, first heated for 3 hours to increase the furnace temperature from 20 ° C to 1000 ° C, and then kept for 1.5 hours. ; Heating for 1.5 hours to 1250°C, holding for 2.5 hours; Heating for ...
Embodiment 2
[0034] The first step, the selection of molybdenum powder
[0035] Select the particle size as 5.0μm and the loose ratio as 1.5g / cm 3 molybdenum powder as raw material;
[0036] The second step, pressing the billet
[0037] Put the molybdenum powder selected in the first step into a cylindrical mold, and then put the mold loaded with molybdenum powder into a cold isostatic pressing machine for pressing, and set the pressure of the cold isostatic pressing machine to 200Mpa. The pressure was maintained for another 15 minutes to obtain a molybdenum rod blank with a diameter of 90 mm;
[0038] The third step, sintering molybdenum billet
[0039] The molybdenum rod blank obtained in the second step is put into the intermediate frequency furnace, and the furnace is filled with hydrogen, and then sintered in stages, first heated for 4 hours to make the furnace temperature rise from 20 ° C to 1000 ° C, and then kept for 2.5 hours ; Heating for 1.5 hours to 1250°C, holding for 2.5 ...
Embodiment 3
[0046] The first step, the selection of molybdenum powder
[0047] The selected particle size is 4.8μm, and the loose ratio is 1.4g / cm 3 molybdenum powder as raw material;
[0048] The second step, pressing the billet
[0049] Put the molybdenum powder selected in the first step into a cylindrical mold, and then put the mold loaded with molybdenum powder into a cold isostatic pressing machine for pressing, and set the pressure of the cold isostatic pressing machine to 190Mpa. The pressure was maintained for another 10 minutes to obtain a molybdenum rod blank with a diameter of 90 mm;
[0050] The third step, sintering the molybdenum billet
[0051] The molybdenum rod blank obtained in the second step is put into the intermediate frequency furnace, and the furnace is filled with hydrogen, and then sintered in stages, first heated for 4 hours to make the furnace temperature rise from 20 ° C to 1000 ° C, and then kept for 2.5 hours ; Heating for 1.5 hours to 1250°C, holding f...
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