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- Générateurs: puissance 500 W, fréquence 150-400 kHz
- Générateurs: puissance 1,2 - 2,4 kW, fréquence 150 - 400 kHz
- Générateurs: puissance 4,2 - 10 kW, fréquence 150 - 400 kHz
- Générateurs: puissance 10-15 kW, fréquence 50-150 kHz
- Générateurs: puissance 30-45 kW, fréquence 50-150 kHz
- Générateurs: puissance 65-135 kW, fréquence 50-150 kHz
- Générateurs: puissance 180-270 kW, fréquence 50-150 kHz
- Générateurs: puissance 20-35-50 kW, fréquence 15-45 kHz
- Générateurs: puissance 75-150 kW, fréquence 15-45 kHz
- Générateurs: puissance 200-500 kW, fréquence 15-45 kHz
- Générateurs: puissance 20-50 kW, fréquence 5-15 kHz
- Générateurs: puissance 75-200 kW, fréquence 5-15 kHz
- Générateurs: puissance 250-500 kW, fréquence 5-15 kHz
- Générateurs: puissance 75-250 kW, fréquence 2-6 kHz
- Générateurs: puissance 300-500 kW, fréquence 2-6 kHz
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- Générateurs de la série CX, fréquence: 50-120kHz, puissance: 5-25kW
- Générateurs de la série SWS, fréquence: 15-30kHz, puissance: 25-260kW
- Générateurs (fours) pour le formage et le forgeage série MFS (0,5-10 kHz)
- Fours de fusion MFS, fréquence: 0,5-10 kHz, puissance: 70-200kW
- Générateurs série UHT, fréquence: 200-400kHz, puissance: 10-160kW
What is the purpose of induction heating generators?
Induction generators convert alternating current to a higher frequency current to then deliver it to the operating coil, allowing an electromagnetic field to be created within it.
When a workpiece is placed in this field, eddy currents are induced in the workpiece. The friction caused by these currents generates precise, clean, non-contact heat. Depending on the power and on the frequency, we are able to determine the heating rate and the penetration depth of the heat.
A water cooling system is usually required to cool the work coil and induction system.
Operating frequency
The size of the workpiece and the heating application dictate the operating frequency of the induction heating equipment. In general, the larger the workpiece, the lower the frequency and the smaller the workpiece, the higher the frequency.
The operating frequency is determined by the tank circuit capacitance, coil inductance and workpiece material properties.
Power requirements
The power required to heat the workpiece depends on:
- The mass of your work piece;
- The material properties of your work piece;
- The temperature increase you require;
- The heating time required to meet your process needs;
- The effectiveness of the field owing to the coil design;
- Any heat losses during the heating process.
Once the power required to heat the workpiece is determined, the appropriate induction heating equipment can be selected, taking into account the coupling efficiency of the coil.