Method for preparing tungsten-copper alloy wires by utilizing hot-swage technology
A technology of tungsten-copper alloy and hot swaging, which is applied in the direction of metal/alloy conductors, manufacturing tools, metal processing equipment, etc., can solve the problems of high production cost and complicated process, and achieve low production cost, simple preparation process and low operating cost low effect
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Embodiment 1
[0016] Wires of tungsten-copper alloy W70Cu30 with a diameter of 3 mm, a length of 300 mm, and a weight percentage of 70 and 30 were prepared.
[0017] Step 1, prepare copper, tungsten and nickel powders with a particle size of 200 mesh copper powder, tungsten powder and nickel powder with a particle size of 6 μm and added ethanol in the following weight ratio, and mechanically mix the four ingredients together for 6 hours,
[0018] Copper powder 20 grams Tungsten powder 35 grams
[0019] 0.05 grams of nickel powder 0.5 milliliters of ethanol is 1wt%;
[0020] Step 2, adding 5 milliliters of Buna-solvent gasoline solution with a concentration of 55 wt% to the mixture obtained in step 1, drying in the shade, mixing evenly and passing through a sieve of 80 mesh to obtain powder;
[0021] Step 3, put the tungsten-copper mixed powder in step 2 into the "three-high" graphite mold with a cavity diameter of 10mm and a length of 200mm by high-speed fluid, and give 10kg impact pressin...
Embodiment 2
[0026] Wires of tungsten-copper alloy W85Cu15 with a diameter of 2 mm and a length of 400 mm and a weight percent of 85 and 15 were prepared.
[0027] Step 1: Prepare copper powder with a particle size of 200 mesh, tungsten powder and nickel powder with a particle size of 8 μm, and added ethanol in the following weight ratio, and mechanically mix the four ingredients together for 6 hours.
[0028] 11.25 grams of copper powder, 29.75 grams of tungsten powder, 0.045 grams of nickel powder, 0.45 milliliters of ethanol or 1 wt%;
[0029] Step 2, add 4.5 milliliters of 55wt% Buna rubber-solvent gasoline solution to the mixed material obtained in step 1, half-dry in the shade, mix evenly and pass through an 80-mesh sieve to obtain powder;
[0030] Step 3, put the tungsten-copper mixed powder in step 2 into the "three-high" graphite mold with a cavity diameter of 10mm and a length of 200mm by high-speed fluid, and give 10kg impact pressing pressure at the same time;
[0031] Step 4:...
Embodiment 3
[0035] A wire of tungsten-copper alloy W80Cu20 with a diameter of 3 mm and a length of 500 mm is prepared.
[0036] Step 1: Prepare copper powder with a particle size of 200 mesh, tungsten powder and nickel powder with a particle size of 7 μm, and added ethanol in the following weight ratio, and mechanically mix the four ingredients together for 6 hours.
[0037] 15 grams of copper powder, 40 grams of tungsten powder, 0.05 grams of nickel powder, 0.5 milliliters of ethanol is 1wt%;
[0038] Step 2, add 5 milliliters of 55wt% Buna rubber-solvent gasoline solution to the mixed material obtained in step 1, half-dry in the shade, mix evenly and pass through an 80-mesh sieve to obtain powder;
[0039]Step 3, put the tungsten-copper mixed powder in step 2 into the "three-high" graphite mold with a cavity diameter of 10mm and a length of 200mm by high-speed fluid, and give 10kg impact pressing pressure at the same time;
[0040] Step 4: Put the above-pressed compact together with th...
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