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The coil is assembled by flat winding the highest standard oxygen free copper conductive copper tube. Unsupported column coil design, integral winding, water-cooled coil and effective coil are made of copper tube coiled together without segmentation, welded with silver welding rod. The two adjacent copper tubes of the induction coil are strictly insulated and advanced segmentation technology is adopted. After the coil is sprayed with imported insulation paint, it becomes a complete structure and is pressed by the upper and lower steel structures in the furnace body. The overall structure is sturdy and has no deformation problems. The appropriate number of turns in the coil can achieve maximum electrical efficiency. The coil is supplied with cooling water from multiple waterways, evenly distributed. The arc-shaped insulation gasket between turns ensures uniform coil spacing, optimal proportion, and facilitates moisture discharge. For the closed design of the induction coil, it is wrapped in insulation and high-temperature resistant materials to prevent high-temperature metal dust from splashing and damaging the induction coil. It is not easy to ignite and requires no maintenance in the later stage. High electrical efficiency, good insulation, strong breathability, and more sturdy structure. The coil with unsupported column technology is assembled in an open steel structure for easy daily maintenance of the coil and magnetic yoke. Coils and other components can be horizontally separated, making it easy to handle problems. The overall structure of the coil is sturdy and has strong mechanical strength, and there is no need to worry about deformation even after long-term use of the furnace lining pushing device for dismantling the furnace.
◆The use of rectangular copper pipes extends the service life of coils
◆Low energy consumption
◆Probe makes the coil safer
◆The new and reasonable coil design can effectively reduce energy consumption, minimize energy waste, and achieve the best energy-saving effect