Vacuum Induction Melting Furnace

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Shandong Yantong Energy Saving Equipment Co., Ltd

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Vacuum induction melting furnace
Yes
12 Month
Induction Heating Machine
CE
Vertical Type
Vacuum Indcution Furnace
3000 C
Induction Heating
Vacuum Pump
Plywood Box
Vacuum indcution furnace
China
8514200010
Product Description
VACUUM INDUCTION FURNACE
 



Vacuum induction melting furnace is vacuum induction smelting equipment which can melt metal and sinter power by using the medium frequency induction heating principle under the condition of vacuum.  It is applicable in the field of metal materials, such as Ni,special steel, precision alloys, Cu alloys, Nd-Fe-B ,Dysprosium metal, active metal, high-temperature alloys, special materials ,magnetic materials and so on. These metal materials can be melted, cast and sintered in a vacuum or in the prot- ection of the atmosphere.

VACUUM FURNACE
Vacuum Melting Furnace is periodic operating, providing vacuum or protective atmosphere, in which the alloy steel, lanthanum and others can smelt and cast. Besides, it can be also used in metal materials' refining.

 
ModelElectric PowerFrequencyMaximum Working Temperature  CapacityUltimate VacuumPressure Rising RateIF power supply
YTFV-330kw4000hz1850 degrees3kgs6.67×10-3Pa6Pa/ hr.IGBT
YTFV-1060kw1500hz3000 degrees10kgs6.67×10-3Pa6Pa/ hr.IGBT
YTFV -25100kw2000hz3000 degrees25kgs6.67×10-3Pa6Pa/ hr.IGBT
YTFV -50100kw1500hz3000 degrees50kgs6.67×10-3Pa6Pa/ hr.KGPS
YTFV-150200kw1500hz3000 degrees150kgs6.67×10-3Pa6Pa/ hr.KGPS
YTFV-200250kw2500hz3000 degrees200kgs6.7×10-2Pa6Pa hr.KGPS


Application:
  1. SINTERING
  2. MELTING
  3. HEATING TREATMENT AND SO ON


Features:

 
  1. High temperature: up to 3000 celsius .
  2. Far infrared thermometer
  3. Water Cooling
  4. PID control
  5. Graphite crucible.

Main technical parameters:
  1. Maximum temperature: 3000 °C
  2. High-temperature zone volume: 0.01m3, 0.02m3, 0.03m3, 0.05m3, 0.1m3, 0.15m3, 0.2m3, 0.3m3
  3. Furnace working atmosphere: vacuum, hydrogen, nitrogen, inert gases
  4. Temperature uniformity: ≤ ± 10 °C
  5. Temperature measurement: infrared optical temperature measurement range of 800 ~ 3500 °C temperature or 0 ~ 3500 °C; Accuracy: 0.2 ~ 0.75%.
  6. Temperature control: process control and manual control; control accuracy: ± 1 °C
  7. Limit heating rate: 200 °C / min (air furnace, depending on the volume and the high temperature furnace configuration).

The advantages of vacuum induction furnaces are as follows:

  1. High Efficiency and Energy Saving: Vacuum induction furnaces utilize electromagnetic induction to convert electrical energy into heat energy, resulting in high energy utilization efficiency and rapid heating. Compared to other furnaces, they consume less energy, significantly reducing electricity costs.

  2. Uniform Heating: Heating in vacuum induction furnaces is generated by electromagnetic induction within the workpiece itself, ensuring uniform heating and temperature consistency throughout the workpiece, reducing thermal stress and deformation.

  3. Environmentally Friendly: Vacuum induction furnaces do not produce smoke, dust, or harmful gases during the heating process, making them environmentally friendly and compliant with environmental protection requirements.

  4. Easy Operation: Vacuum induction furnaces are equipped with advanced electronic computer technology for control, providing stable equipment performance, reliable quality, and strong anti-interference ability. The operation interface is simple and easy to understand, facilitating operator use.

  5. Wide Application Range: Vacuum induction furnaces can be used for heat treatment of various materials, including steel, non-ferrous metals, and non-metallic materials, meeting different process requirements.

  6. High Flexibility: Vacuum induction furnaces can be customized according to user needs, including furnace size, heating power, and heating methods, to meet different production demands.

  7. High Safety: Vacuum induction furnaces feature a comprehensive protection system, including overcurrent, overvoltage, undervoltage, and phase loss protections, ensuring the safety and stability of the equipment during operation.




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