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High temperature graphitization furnace
Commonly used in ultra-high temperature furnaces up to 3000°C, used for various high thermal conductivity graphite membranes (PI membranes), negative electrode materials for lithium batteries, carbonization and graphitization of carbon materials for the carbonization and graphitization of carbon materials; shaping of carbon fiber filaments Graphitization and other materials that can be sintered in a carbon environment.
High temperature graphitization furnace introduction
Commonly used in ultra-high temperature furnaces up to 3000°C, used for various high thermal conductivity graphite membranes (PI membranes), negative electrode materials for lithium batteries, carbonization and graphitization of carbon materials for the carbonization and graphitization of carbon materials; shaping of carbon fiber filaments Graphitization and other materials that can be sintered in a carbon environment.
Product Parameter
(High X Wide X Long mm)
Product Characteristics
1, 3000 °C, commonly used temperature 2900 °C.
2. Working atmosphere: vacuum displacement Ar2, N2 protection (micro-positive pressure).
3, temperature measurement: far-infrared optical temperature measurement temperature range 1000 ~ 3000 °C or 0 ~ 3000 °C; temperature measurement accuracy: 0.2 ~ 0.75%.
4, temperature control: program control and manual control; temperature control accuracy: ± 1 °C.
5. The equipment adopts induction heating of medium-frequency power, high efficiency: unique furnace design greatly improves the uniformity of furnace temperature. Limit heating rate: 200°C/min (air furnace, depending on volume of high temperature zone and furnace structure) ±10°C uniformity of furnace temperature and ±1°C temperature control accuracy.
6, low energy consumption: thick aluminum oxide insulation material, insulation and fire resistance effect, heat loss, heating speed.
7. Long service life of wearing parts: The bottom of the crucible is filled with a high-strength hard composite felt to ensure that the graphite crucible is evenly and evenly stressed under high temperature, which is 1.2 times of the service life of similar products.