Wholesale graphite electrode 200mm 300mm 400mm RP Hp UHP graphite electrode for steel making
|
Nominal Diameter(mm) |
Resistivity |
Density |
Flexure Strength |
Elastic Modulus |
Ash Content |
CTE |
Current Load |
Current Density |
|
300 |
6 |
1.67-1.73 |
12 |
10.5 |
0.3 |
2 |
13000-17400 |
17-24 |
|
350 |
6 |
1.67-1.73 |
12 |
10.5 |
0.3 |
2 |
17400-24000 |
17-24 |
|
400 |
6 |
1.67-1.73 |
12 |
10.5 |
0.3 |
2 |
21000-31000 |
16-24 |
|
450 |
6 |
1.67-1.73 |
12 |
10.5 |
0.3 |
2 |
25000-40000 |
15-24 |
|
500 |
6 |
1.67-1.73 |
12 |
10.5 |
0.3 |
2 |
30000-48000 |
15-24 |
|
550 |
6 |
1.67-1.73 |
12 |
10.5 |
0.3 |
2 |
34000-53000 |
14-22 |
|
600 |
6 |
1.67-1.73 |
12 |
10.5 |
0.3 |
2 |
38000-58000 |
13-21 |
|
650 |
6.2 |
1.67-1.73 |
12 |
10.5 |
0.3 |
2 |
41000-65000 |
12-20 |
|
700 |
6.2 |
1.67-1.73 |
12 |
10.5 |
0.3 |
2 |
45000-72000 |
12-19 |
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Electrolysis graphite electrodes are specialized conductive materials critical to large-scale electrochemical processes, including aluminum smelting, chlor-alkali production, and magnesium refining. Unlike general-purpose graphite electrodes, those designed for electrolysis must endure extreme conditions: prolonged exposure to corrosive electrolytes (e.g., molten cryolite in aluminum production), high current densities, and temperatures exceeding 950°C. Their performance directly impacts energy efficiency, product purity, and operational costs.
Key to their functionality is material purity. Electrolysis electrodes are typically manufactured from ultra-high-purity petroleum coke (sulfur < 0.5%) and coal tar pitch, with total impurities controlled below 0.1%. Low impurity levels prevent "contamination" of electrolytic products-for example, in aluminum smelting, iron or silicon impurities would degrade the metal's mechanical properties. Additionally, high electrical conductivity (resistivity < 70 μΩ·m) minimizes energy loss during electrolysis, a critical factor given that aluminum production accounts for ~1% of global electricity consumption.
Mechanical durability is equally vital. Electrolysis cells operate with constant anode-cathode current, inducing thermal stress and mechanical wear.
Graphite's anisotropic structure-dense in the direction of current flow-reduces cracking under thermal cycling. Modern electrodes also feature optimized designs, such as pre-baked or self-baking structures, to extend service life. For instance, pre-baked anodes in aluminum smelters last 25–30 days, while advanced formulations are pushing this to 40+ days, reducing downtime and waste. As green electrolysis technologies (e.g., inert anodes for aluminum) emerge, graphite electrodes remain foundational, balancing performance with sustainability.
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