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Conductive material
Classification:
Conductive material
Key words:
Conductive material
Detailed introduction
Characteristics
Conductive materials used in the field of electrical engineering should have high conductivity, good mechanical properties, processing performance, resistance to atmospheric corrosion, high chemical stability, but also should be rich in resources, low price.
Aluminum silver-plated conductive rubber: has excellent shielding performance and anti-smoke performance;
Nickel-coated graphite conductive rubber: excellent electrical conductivity and electromagnetic shielding, corrosion resistance
Copper silver-plated conductive rubber: has the most excellent conductivity;
Glass silver-plated conductive rubber: has the best cost performance;
Sterling silver conductive rubber: has good anti-mold properties.
Advantages
The conductive materials used in the electrical field should have high conductivity, good mechanical properties, processing performance, atmospheric corrosion resistance, high chemical stability, and should be rich in resources and low in price.
Grade GERDE | Class A | Class B |
Moisture | ≤0.2% | ≤ 0.5% |
fixed carbon | ≥99.9% | ≥ 99. 5% |
Grey powder | ≤0.1% | ≤ 0.5% |
Iron Fe | ≤20% | ≤50% |
Copper Cu | 0.5PPM | ≤ 1PPM |
Molybdenum Mo | ≤ 1PPM | ≤ 1.5PPM |
chromium cr | ≤ 2PPM | ≤ 5PPM |
Cd | ≤ 0.5 | ≤ 1PPM |
Lead Pb | ≤ 30PPM | ≤ 80PPM |
Arsenic | ≤ 0.1PPM | ≤ 1PPM |
Antimony Sb | ≤ 0.2PPM | ≤ 1PPM |
Cobalt Do | ≤ 0.1PPM | ≤ 1PPM |
Vanadium V | ≤ 0.5PPM | ≤ 1PPM |
Nickel Ni | ≤ 3PPM | ≤ 5PPM |
Granularity | 300- 5000 mesh | 300 - 3000 months |
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