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High Frequency Soft Welding Tube Ferrite Rod from China Suppliers and Factory for Efficient Welding Solutions
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High Frequency Soft Welding Tube Ferrite Rod from China Suppliers and Factory for Efficient Welding Solutions

Introducing our high-quality HF welding pipe mill machine, a leading solution manufactured in China. This advanced equipment is crafted by top suppliers in the industry and is designed for optimal performance in pipe production. Key components include a high-frequency coil, steel tubes for welding, a ferrite rod (magnetic rod), squeeze rolls, and an efficient water cooling system. Our factory adheres to stringent quality standards, ensuring durability and reliability in every unit. Enhance your production capabilities with our cutting-edge HF welding pipe mill machine today!

    Product Description

    1. Main Components of a High-Frequency Welded Pipe Mill:

    A Hf welding pipe mill machine mainly consists of the following parts: a high-frequency (coil), the steel tube to be welded, a ferrite rod (magnetic rod), squeeze rolls, and a water cooling system.

    2. Working Principle of the High Frequency Ferrite Core:

    Its operation follows a strictly electromagnetic induction principle:

    When high-frequency current flows through the induction coil, a high-frequency alternating magnetic field is generated. As a high-permeability magnetic path, the magnetic rod which is placed inside the pipe actively guides and concentrates the magnetic flux lines, focusing them precisely along the weld seam edges. At this location, strong eddy currents are induced by the dense magnetic flux, instantly generating heat sufficient to melt the metal. The squeeze rolls then apply pressure to finish the welding process.

    3. Magnetic Permeability Requirements for the Magnetic Rod:

    To effectively increase the magnetic flux in the induction coil, the magnetic rod must have a high magnetic permeability. Since permeability is a function of the magnetic field strength H, it is particularly required to be high within the range of magnetic fields used in the welding process. Because most welding machines operate under relatively low magnetic field strength, the initial permeability is typically used as a measure of this property.

    When the alternating magnetic field generated by the coil becomes too strong, the magnetic rod can reach magnetic saturation. At this point, if the alternating magnetic field continues to increase, the magnetic rod will lose its efficiency for further increase. Therefore, for large-power pipe welding units, it is necessary to pay attention to using magnetic rods with high saturation flux density (also known as saturation magnetic induction strength).

    High Frequency Soft Welding Tube Ferrite Rod

    Specification

    Initial permeability 800±25%
    Saturation magnetic flux density ≥320mt
    Core loss 28-30mw/g
    Curie temperature ≤300℃
    Resistivity 106 Ω/cm2
    Material Mn-Zn ferrite
    Material density 4.85g/cm3
    Grade Mn-Zn ferrite
    Delivery Time within 7 days

    Temperature Characteristics of Magnetic Permeability

    Temperature characteristics of magnetic permeability

    Packing & Delivery

    packing & delivery

    Frequently Asked Questions

    What are the main components of a high-frequency welded pipe mill?
    A high-frequency welding pipe mill machine mainly consists of a high-frequency coil, the steel tube to be welded, a ferrite rod (magnetic rod), squeeze rolls, and a water cooling system.
    How does the high-frequency ferrite core work in the welding process?
    It operates on the principle of electromagnetic induction. The alternating magnetic field generated by the high-frequency current is concentrated by the high-permeability magnetic rod onto the weld seam edges. This induces strong eddy currents that instantly heat and melt the metal, which is then pressed together by squeeze rolls.
    Why is initial permeability a critical factor for the magnetic rod?
    Since most welding machines operate under relatively low magnetic field strength, initial permeability is used to measure the rod's ability to effectively increase the magnetic flux in the induction coil within the working magnetic field range.
    What is the risk of magnetic saturation in large-power pipe welding units?
    If the alternating magnetic field becomes too strong, the magnetic rod can reach magnetic saturation and lose its efficiency. Therefore, large-power units must use magnetic rods with high saturation flux density to maintain performance.
    What is the Curie temperature of this Mn-Zn ferrite core?
    The Curie temperature of this Mn-Zn ferrite core is ≤300℃, ensuring stable magnetic performance within standard high-frequency welding temperature limits.
    What is the estimated delivery time for these ferrite rods?
    The standard delivery time for the high-frequency Mn-Zn ferrite rods is within 7 days.

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