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China Suppliers Factory Capacitor for Intermediate Frequency Furnace - High Efficiency Water Cooled Design

Technical Properties of Our Water Cooled Capacitors
Our water cooled capacitors adhere to the standard GB/T3984.1-2004/IEC60110-1:1998, ensuring top-quality performance.
We offer both insulated and non-insulated shell designs to meet diverse application needs.
Featuring a professional dielectric system designed for high efficiency, our products stand out in the market.
Our capacitors are equipped with a specialized cooling system that provides excellent heat dissipation options, including single, double, or quadruple water tubes.
Between the capacitor terminals, our products can withstand a line frequency of 2.0UN or DC 4.0UN for 10 seconds, ensuring reliability.
The insulation capacitor shell can endure a power-frequency test voltage of 2.15UN, with a minimum of 2000V lasting for 10 seconds.
Capacacitance tolerance ranges from -5% to +10%, promoting consistent performance.
Under rated power frequency voltage, the dissipation factor tgδ is ≤0.0008, indicating high efficiency.
Additionally, our cooling tube sealing test can withstand an air pressure of 1MPAa for 2 minutes, ensuring durability.

As a leading factory and supplier in China, we are committed to delivering high-performance water cooled capacitors that meet international standards and customer expectations.

    Medium Frequency Capacitors for smelting furnace

    Applications
    • Induction furnaces and heaters
    • Improve power factor
    • Tune special furnace circuits

    General Technical Spec

    Flair water-cooled capacitors applied for all-film structure, with folded aluminum foil/film and non biodegradable non PCB high insulation immersion agents added as the main raw materials for production.
    Max rated Voltage range 8000V
    Rated Frequency 50Hz~300Khz
    Max Rated capacity 15000Kvar
    Dielectric water-cooled all-film technology
    Impregnating compound high quality liquid biogegradbale (Non polychlorodiphenyls)
    Nos of Terminals Custom-design
    Temperature category -25℃- 50℃
    Case material Aluminum alloy/stainless steel
    Cooling method Water cooling/forced ventilation cooling/natural cooling
    Protection design pressure switch
    Case insulation or non-insulation
    Mounting Upright or horizontally position (indoor)

    Design and characteristics of water cooled capacitors

    In high-current and high-frequency applications, film/foil, metallized film water cooled capacitors are used for a wide range of induction heating, including filtering and tank circuit applications. The design of these capacitors makes them suitable for high-power, high-current, and high-frequency, such as broadcast transmitter, induction heating, melting, and high-frequency welding systems.

    Using sets of small capacitors helps to distribute the heat generated by capacitors. The small capacitors are commonly used in power electronic circuits. Although this solution helps in thermal management, it is not a suitable option for applications with limited space. Capacitors with integrated water cooling systems are suitable for such applications. Using water-cooled capacitors also helps to reduce the cost and the number of capacitor components used.

    Film and ceramic capacitors with integrated liquid cooling systems are increasingly becoming popular for high-current applications. The liquids that are commonly used in such systems are water, a mixture of water and chemical solutions, and de-ionized water. Liquid-cooled capacitors are a suitable choice for power electronic circuits with high energy densities. This cooling method is suitable for applications where the ambient temperature does not exceed the value 50℃ with common design.

    Induction heating capacitor Working Conditions

    • 1 The capacitors are advised to be installed where has no violent mechanical vibration, no harmful gas/steam emission, no electrical conductivity, non-explosive dust.
    • 2 Environment temperature between -25℃- 50℃
    • 3 Better non-suspended installation.
    • 4 The inlet temperature of the cooling water shall not exceed 35℃, and the outlet temperature of the cooling water shall not exceed 45℃.
    • 5 The maximum allowable reverse voltage shall not exceed 1.05 times, and the maximum allowable current shall not exceed 1.15 times.

    Capacitor maintenance notes

    • 1 The capacitor must be discharged with shorting stub, if you want to touch the capacitor after the machine being turned off. In case the residual voltage hurt you.
    • 2 The frozen cooling water will cause capacitor fault, so please make sure no water left inside when the capacitors are not working. And prevent the cooling water from freezing under 0℃.
    • 3 Clean the ceramic terminals in regular to avoid creepage and short out.
    • 4 The thermal changes(expand with heat and contract with cold;) will cause the screws loosed. So It is necessary to check on the screws each time when the machine shut down.
    • 5 All metal accessories which to be connected to capacitors must be H62 or T2 Copper.
    ⚠️ Don’t touch the ceramic terminals during the transportation.

    Frequency Of Induction Heat Treatment

    • ♢ Intermediate Frequency:500~20000HZ usually use 1000~8000HZ
    • ♢ High frequency: 100~500KHZ,ususally use 200~300KHZ
    • ♢ Ultrasonic frequency: 30~80KHZ,usually use 30~40KHZ
    • ♢ Line frequency: 50hz,60hz

    The medium frequency induction heating treatment

    The current frequency of the medium frequency induction heating device is usually 500hz ~ 10000HZ. It is suitable for the surface quenching of steel parts with a heating layer depth of 3 ~ 16mm and a large workpiece diameter (20 ~ 500mm), and can also be used for tempering, normalizing, forging billet diheat or melting metal. In the automobile and tractor manufacturing industry, the surface quenching of crankshaft and camshaft parts is mostly heated by medium frequency equipments.

    The medium frequency power supply of the medium frequency induction heating device has two kinds: medium frequency generator (machine type medium frequency power supply) and thyristor medium frequency power supply.

    Working principle of water cooled capacitors in induction heating equipment

    Water cooled induction heating uses an alternating magnetic field to generate induced current in a metal conductor, especially in the induction coil and power supply section, and converts this energy into thermal energy to achieve rapid heating. Its main working principle is as follows:
    • 1 When an alternating magnetic field acts on a metal conductor, it will generate induced current in the conductor;
    • 2 Induced current generates resistance in a conductor, converting electrical energy into thermal energy;
    • 3 Through the heat dissipation of the water cooling system, heat is taken away to ensure that it will not overheat during the heating process;
    Working-principle2
    Working-principle1

    How we make induction heating capacitors?

    Frequently Asked Questions
    QWhat are the main applications of Medium Frequency Capacitors?
    These capacitors are primarily used in induction furnaces and heaters to improve the power factor and tune special furnace circuits.
    QWhat are the temperature requirements for the cooling water?
    The inlet temperature of the cooling water must not exceed 35℃, and the outlet temperature of the cooling water must not exceed 45℃.
    QHow can I prevent capacitor faults due to freezing?
    Make sure no water is left inside the capacitors when they are not in operation, especially in environments where the temperature drops below 0℃.
    QWhy is it necessary to check the screws regularly?
    Thermal expansion and contraction (expanding with heat and contracting with cold) can cause the terminal screws to loosen. It is essential to inspect and tighten them each time the machine is shut down.
    QWhat materials must be used for metal connections to the capacitor?
    All metal accessories connected directly to the capacitors must be made of H62 or T2 Copper to ensure proper electrical conductivity and performance.
    QWhat are the typical working conditions for capacitor installation?
    Capacitors should be installed in environments with no violent mechanical vibration, no harmful gas or steam emissions, no electrical conductivity, and no explosive dust. The ambient temperature must remain between -25℃ and 50℃.

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