| Heating Performance |
Rated Power |
50–500 kW |
Matched with furnace volume and material heating demand |
|
Maximum Temperature |
1800–3000℃ |
Adjustable according to process; precise control via infrared/thermocouple |
|
Heating Rate |
10–50℃/min |
Rapid heating for small-batch production; slow heating for high-purity purification |
| Hydrogen System |
Hydrogen Purity |
≥99.99% (high-purity H₂) |
Impurity-free hydrogen avoids secondary pollution of materials |
|
Atmosphere Pressure |
0.1–0.5 MPa (positive pressure) |
Positive pressure prevents air leakage; pressure adjustable via pressure relief valve |
|
Hydrogen Flow Rate |
5–50 L/min |
Matched with material quantity and cracking reaction rate |
| Vacuum Performance |
Ultimate Vacuum Degree |
1×10⁻³–5×10⁻² Pa |
Pre-vacuum to remove air before hydrogen injection; reduces oxidation risk |
|
Vacuum Pumping Speed |
10–100 m³/h |
Ensures rapid vacuuming and stable vacuum environment |
| Structural Parameters |
Furnace Chamber Volume |
0.01–0.5 m³ |
Suitable for small-to-medium batch production (0.1–50 kg/batch) |
|
Electrode Type |
Graphite electrode (replaceable) |
High-temperature resistance, low impurity content; matching electrode diameter with power |
|
Lining Material |
Zirconia, alumina, or graphite |
Corrosion resistance, high-temperature stability; avoids material contamination |
| Cooling System |
Cooling Method |
Water cooling (circulating) |
Cools furnace shell, electrodes, and vacuum chamber |
|
Water Pressure/Flow Rate |
0.3–0.6 MPa / 10–50 L/min |
Prevents equipment overheating; equipped with water shortage alarm |
| Safety System |
Safety Interlocks |
Vacuum leak detection, hydrogen concentration monitoring, over-temperature alarm, emergency shutdown |
Ensures safe operation of hydrogen atmosphere and high-temperature environment |
|
Explosion-Proof Device |
Explosion-proof valve, hydrogen discharge pipeline |
Prevents hydrogen explosion risk; meets industrial safety standards |