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Energy-saving steel-shell furnace body

Used for melting ferrous and non-ferrous metals;

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  • Product Description
  • Product Overview
    • Used for melting ferrous and non-ferrous metals;
    • High-magnetic-permeability oriented magnetic yoke with a large distribution area ensures uniform heat dissipation and reduces magnetic field losses.
    • Safe and reliable hydraulic tilting furnace method;
    • Equipped with a high-efficiency dust-collection, environmentally friendly cyclone dust hood;
    • Embedded furnace cover for easier slag removal and reduced worker fatigue.
    • Open-design furnace body for easy maintenance;
    • Equipped with anti-fall guardrails to ensure worker safety;
    Product Details

    Furnace dust hood

    The furnace dust collection hoods are available in cyclone-type and smoke-ring-type designs, both of which offer excellent dust collection performance and meet environmental compliance requirements.
    The cyclonic dust hood features a robust, high-temperature-resistant steel structure and imported bearings. The middle section of the dust hood is lined with fire-resistant materials, allowing it to be tilted and held in any position—forward or backward—facilitating easy removal of dust while simultaneously protecting operators during feeding, slag removal, and molten iron pouring.
    Smoking-style vacuum cover—safe and reliable, with simple movement, easy operation, and compact size.

    Induction coil

    The induction coil is the core component of the induction melting system and is made from heavy-duty copper tubing with a constant wall thickness in its cross-section. The copper tubing is crafted from high-quality, solid, and durable TU1 oxygen-free copper that boasts excellent conductivity. The two turns of copper tubing comprising the induction coil are rigorously insulated from each other, and insulating sheets are inserted between adjacent coils. After the coils are coated with insulating varnish, they form a complete structural assembly that is firmly compressed by upper and lower steel frameworks within the furnace body, making the overall structure even more robust.

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