Copper-based electric contact composite material for low-voltage electrical apparatus and warm compaction technology thereof
A composite material, electrical contact technology, applied in the direction of contacts, circuits, electrical switches, etc., can solve the problem that the anti-arc ablation performance needs to be improved, affect the performance of electrical contacts, etc., to improve the anti-oxidation performance and comprehensive performance, improve The effect of improving the performance of arc ablation resistance and welding resistance
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Embodiment 1
[0017] The composition weight ratio of the material of the embodiment of the present invention is: 2% bismuth, 2% tungsten carbide, 0.08% lanthanum-rich mixed rare earth, 0.4% zinc stearate, and the rest is copper. Prepared using the following steps:
[0018] (1) Melt the lanthanum-rich mixed rare earth material and copper according to the ratio, and then use the atomization method to make rare earth-copper powder particles, mix rare earth-copper powder (200-400 mesh) and bismuth powder (200-400 mesh), carbonize Tungsten (200-400 mesh) and zinc stearate are ball-milled and mixed according to the ratio. The ball-milling time is 1.5 hours, and the ball-to-material ratio is 15:1;
[0019] (2) The uniformly mixed powder is warm-pressed, the temperature is 120°C, the pressure is 500MPa, and the holding time is 2 minutes;
[0020] (3) Pre-sinter the warm-pressed parts under the protection of argon gas, the pre-sintering temperature is 400°C, the time is 30 minutes, and then vacuum ...
Embodiment 2
[0024] The composition weight ratio of the material in the embodiment of the present invention is: 2% bismuth, 0.5% tungsten carbide, 0.08% lanthanum-rich mixed rare earth, 0.4% zinc stearate, and the rest is copper.
[0025] This group adopts the same process step and parameter of embodiment 1.
[0026] Basic properties of this material: ① Density: 8.26 (g / cm 3 ); ② Resistivity: 2.10 (μΩ.cm) ③ Hardness: 38 (HB).
Embodiment 3
[0028] The composition ratio of the material in the embodiment of the present invention is: 2% bismuth (200-400 mesh), 4% tungsten carbide (200-400 mesh), 0.08% lanthanum-rich mixed rare earth, 0.4% zinc stearate, and the rest is copper. Prepared using the following steps:
[0029] This group adopts the same process steps and parameters as in step (1) and step (2) of Example 1, and then puts the sample into a high-temperature resistance furnace, first pre-burns it under an argon protective atmosphere for 30 minutes, and then conducts it under vacuum Sintering, the sintering temperature is 850°C, and the holding time is 1.5 hours.
[0030] Basic properties of this material: ① Density: 8.26 (g / cm 3 ); ② Resistivity: 3.75 (μΩ.cm) ③ Hardness: 50 (HB).
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