Tungsten powder, anode body of capacitor and electrolytic capacitor
A capacitor and anode body technology, applied in solid electrolytic capacitors, electrolytic capacitors, capacitors, etc., can solve problems such as large leakage current
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Embodiment 1
[0066] In a hydrogen flow, tungstic acid was reduced at 980°C to obtain an average particle size of 0.5 μm and a specific surface area of 0.3m 2 / g of coarse powder of tungsten. In this powder, mix 9.6% by mass of commercially available germanium powder (average particle diameter 1 μm) prepared separately, put into a container made of tungsten, and in a vacuum high-temperature furnace with a molybdenum electrode, at 3×10 -4 It was left to stand at 1320° C. for 40 minutes under Pa, then cooled naturally until it became room temperature, and returned to normal pressure. Then, it was crushed with a hammer mill, and sieved with a sieve with an aperture of 320 μm to obtain tungsten granulated powder. The obtained granulated powder had an average particle diameter of 120 μm and a specific surface area of 0.2 m 2 / g.
[0067] Elemental analysis of the obtained granulated powder revealed that germanium was 4.8% by mass, oxygen was 0.97% by mass, and other impurity elements were...
Embodiment 2~5 and comparative example 1~3
[0069]Except having changed the compounding quantity of germanium in Example 1, it carried out similarly to Example 1, and obtained the tungsten granulated powder. The average particle diameter and specific surface area of each example are the same as in Example 1. The germanium and oxygen contents of the granulated powders obtained in each example are shown in Table 1, and the other impurity elements were all 350 mass ppm or less.
Embodiment 6
[0071] Commercially available tungsten trioxide powder, 25 times the mass of tungsten trioxide powder (tungsten carbide balls with a diameter of 1mm), and water are charged to the Mitsui Mining Co. , pulverization was carried out at 700° C. for 5 hours under a hydrogen flow.
[0072] After removing the pulverized material, the water was evaporated to obtain an average particle size of 0.3 μm and a specific surface area of 2.3 m 2 / g of coarse powder of tungsten. Then, add commercially available germanium powder (average particle diameter 0.2 μ m) so that it is 7.2 mass %, fully mix, put into the decompression high-temperature furnace, at 7 * 10 -4 It was left to stand at 1360° C. for 40 minutes under Pa. During the temperature drop, nitrogen gas was fed into the furnace at 1000° C. so as to become 10 kPa, and maintained for 20 minutes. Finally, after returning to normal pressure with nitrogen gas, it was taken out of the furnace at room temperature. Then, it was crushed ...
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