Boron Carbide Vacuum Hot Pressing Furnace

1. The Boron Carbide Vacuum Hot Pressing Furnace can help improve efficiency.
2. The Boron Carbide Vacuum Hot Pressing Furnace can effectively reduce energy consumption.
3. Boron Carbide Vacuum Hot Pressing Furnace can not only use a hot pressing process, but can also be applied to sintering, heat treatment, and other high-temperature processes.

  • Information

Product introduction of Boron Carbide Vacuum Hot Pressing Furnace:

Vacuum hot pressure furnace is a complete set of equipment for hot pressing materials under vacuum (or other atmosphere) conditions. It mainly adopts resistance heating and pressurizes the press head driven by the oil cylinder. The equipment combines vacuum/atmosphere, hot pressing and high temperature sintering, which is suitable for high temperature hot forming of new materials such as powder metallurgy and functional ceramics.Boron carbide is a ceramic material with high hardness, high melting point and high thermal conductivity. It has excellent wear resistance, corrosion resistance and high temperature stability. It is widely used in high temperature, high pressure and wear resistance fields.

Boron carbide

Product Benefits of Boron Carbide Vacuum Hot Pressing Furnace:

1. Our Boron carbide hot pressing furnace can heat and press in an oxygen-free or low-oxygen environment, effectively preventing material oxidation and pollution. This ensures product quantity , purity, and avoids material performance degradation due to oxidation.

2. This Boron carbide vacuum furnace provides uniform heating conditions for materials to ensure stable and uniform pressure on the materials.

3. This Boron carbide vacuum sintering furnace can finely adjust the temperature to meet the heating requirements of different materials and processes, ensuring product quality and performance of the product.

4. Our Boron carbide high temperature sintering furnace can quickly heat materials.


Product Specifications of Boron Carbide Vacuum Hot Pressing Furnace:

Installation formvertical
Heater distribution modeCircular distribution (squirrel cage)
Heater materialGraphite/tungsten/molybdenum/tantalum/silicon molybdenum rod/silicon carbon rod/nickel chromium alloy, etc
Thermal insulation materialHard carbon felt/tungsten, molybdenum reflective screen/mullite felt, etc
Maximum temperature2300℃ (vacuum/inert atmosphere) /1650℃ (oxygen)
Temperature control precision±1℃
Temperature homogeneity±5℃
Limit vacuum degree5×10-4Pa
Rate of pressure rise0.5Pa/h
Maximum pressure1T to 1000T optional
Indenter displacement accuracy0.1mm
Fluctuation of pressure±0.1MPa
Size of average temperature zoneΦ1000mm×1500mm
Mode of controlAutomatic/Manual


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