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Induction melting equipment for steel / iron / copper / aluminum / precious metals melting by

ITC induction melting furnaces are designed for maximum electrical efficiency using heavy walled, high electrically conductive copper tubing. The furnaces can be used with ceramic (non-conductive) crucibles or conductive crucibles such as graphite, clay graphite or silicon carbide. Our furnaces are designed for each customer's specific.


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Advanced Solutions for Automation in Steel Melting. Inductotherm scrap drying and automated charging systems enhance safety and keep pace with melting operations. High-capacity heavy steel shell coreless melting furnaces assure a steady supply of on-specification molten steel, while our Meltminder ® computer systems allow furnace operators to manage melting operations more precisely and.


Steel sheel with double crucible induction melting furnace realtime quotes, lastsale prices

We design and manufacture the most advanced induction melting, heating, holding and pouring systems for virtually all metal and material processing. These include equipment for gray and ductile iron, steel, copper and copper-based alloys, aluminum, zinc, reactive metals, precious metals, silicon, and graphite heating, as well as numerous other.


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The steel melting induction furnace system is utilized for melting and holding ferrous and non-ferrous metals including copper, aluminum, steel, iron, stainless steel, gold and more. It also has a melting capacity of 1 t/h to 25 t/h. Power range is from 250kw to 12000kw. More iron foundries take use of this type of induction furnace (such as.


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China. The percentage of electric steel produced with electric arc furnaces as the traditional melting unit around the world (without China, an exceptional case with 90 % oxygen steel) is around 45 %, and this percentage is growing. After the development of induction technology with inverter outputs of over 40 MW for crucible


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What is induction melting? Induction melting is a cost-effective and energy-efficient way to raise the temperature of a metal or ore to its melting point and to hold that temperature to perform metallurgical processes such as smelting, alloying, mixing, and casting.


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It depends on the alloy and the selling price of the product. If a foundry is producing mainly carbon steel or low-alloy castings, the cost of higher-grade scrap may be significant. Temperature Control and Melting — Temperature control with induction melting is accurate and rapid. Applying indirect power for only a minute or two will increase.


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Induction heating is the process of heating electrically conductive materials, namely metals or semi-conductors, by electromagnetic induction, through heat transfer passing through an inductor that creates an electromagnetic field within the coil to heat up and possibly melt steel, copper, brass, graphite, gold, silver, aluminum, or carbide.


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It gets hot enough to melt and forge steel, iron, and aluminum. An induction heater operates by surrounding the object to be heated with a coil carrying high frequency AC current.


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An induction furnace is an electrical furnace in which the heat is applied by induction heating of metal. Induction furnace capacities range from less than one kilogram to one hundred tons, and are used to melt iron and steel, copper, aluminum, and precious metals.. The advantage of the induction furnace is a clean, energy-efficient and well-controlled melting process, compared to most other.


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In a conventional steel melting/refining process a carbon boil is employed with the intent of carbon reduction and hydrogen and nitrogen removal. Carbon boil is not a common practice in induction furnace melting, principally due to the fact that the stirring does not allow the development of a distinct slag layer on top of the melt.


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Inductotherm's Heavy Steel Shell Furnaces are ideal for melting all metals and silicon. Heavy Steel Shell Furnaces are also available with an optional wide-bodied design which have a significantly larger bath diameter and furnace opening and can be ideal depending on your application. They offer additional benefits such as lower installation.


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for the induction furnace in comparison to the electric arc fur - nace, which demonstrate a cost benefit of 15 US$/t of melt [4]. THE MOST POWERFUL INDUCTION FUR-NACE IN THE WORLD The Chinese steelmaker Tisco (Taiyuan Iron Steel Co. Ltd.) operates a steel works in Taiyuan with an output of 10 Mt/a, of which 3 Mt/a are stainless steels.


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Induction melting had dramatic growth during the 1960s based on line frequency technology, and later with the large-scale introduction of medium frequency power supply during the 1980s. Making of mild steel in the induction furnace was first experimented during early 1980s and it gained popularity when the production of sponge iron utilizing.


induction melting steelUnited Induction Heating Machine Limited of China

Steel Shell Coreless Melting Furnace. ITC provides a wide range of steel shell coreless induction furnaces with matching power supplies. Ranging from 650 to 20 000 lbs (450 kg to 9 100 kg) in capacity, our heavy-duty steel shell design provides economic and performance benefits. By eliminating distortion, lining life is increased, and the.


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Induction Furnace Melting. Induction furnace melting is a process of melting metal by using electromagnetic induction to produce eddy current heating in metal materials in induction furnace, also called induction melting. It is applicable to melting high-grade alloy steel, high-grade cast iron, high-temperature alloy, electrical engineering.