跳至主要内容

博文

目前显示的是 三月, 2023的博文

10-500Kg Vacuum Induction Furnace Specifications

10-500Kg Vacuum Induction Furnace Specifications The melting of metals by electromagnetic induction heating in a vacuum state is called vacuum induction melting. The main structure of the vacuum induction furnace includes a furnace body, a crucible, an induction coil, a vacuum system, a melting power supply, and a control system. The melting power supply is an intermediate frequency AC power supply, and the frequency selection depends on the metal properties and melting volume. 10-500Kg vacuum induction melting can realize refining, and impurities are removed, decomposed, floated, and volatilized through chemical reactions in the melting process. When the metal is melted to the desired pure state, it is usually poured into the mold through a preheated funnel. Vacuum induction melting is generally used to produce superalloys, stainless steels, composite magnet alloys, and other important advanced alloys. 1. 10-500Kg Vacuum Induction Melting Furnace Application: It is used for smelting a

Induction Furnace Slag Composition

Induction Furnace Slag Composition Induction Furnace Slags are often chemically complex and contain a variety of contaminants from raw metals. Slag can make up about 25% of a foundry's solid waste stream. Common slag components include metal oxides, molten refractories, sand, and coke ash (if coke is used), among others. The main metal oxides present in the slag were Fe 2 O 3 (14.30%), Al 2 O 3 (7.89%), MnO (5.06) and CaO (1.49%), and metalloid SiO 2 (66.42). The actual composition of slag is much more complicated. Because of the erosive effect of the slag on the crucible material during the smelting process, a part of the crucible material dissolves into the slag. In addition, the deoxidation reaction products of many deoxidizers are also absorbed by the slag, which complicates the actual slag composition. However, the basic composition of the slag did not change much. What is the function of smelting slag in intermediate frequency induction furnace ? (1) Protect molten steel to

Induction Furnace Slag

Induction Furnace Slag During induction furnace smelting, the metal is heated by induction and then conducted to the slag, so the temperature of the slag is low, and the furnace structure determines that the steel-slag interface is small, which is not conducive to the physical and chemical reactions between the molten pool and the slag. Therefore, when smelting special steel or nickel-based alloys, we should strive to use better raw materials, mix ingredients according to the burning loss of each element, and heat and melt quickly. When a large amount of charge has been melted, slag should be added to reduce oxidation. The slag should be compatible with the furnace lining . After complete melting, according to the composition of the finished product, add deoxidizers (ferrosilicon powder, silicon calcium powder, aluminum powder, etc.) in batches, take samples for analysis, and adjust the composition if necessary. When the composition is qualified and the deoxidation is good, the steel c

Induction Furnace Safety Precautions

Induction Furnace Safety Precautions Explain in detail the safety operation rules and precautions of intermediate frequency induction furnace The intermediate frequency induction furnace plays an important role in the work and use of foundries, foundries, and metal smelting plants, and can help manufacturers complete the work of casting, foundry, and metal smelting. Safety must also be ensured when operating an intermediate-frequency induction furnace. Safe operation and use of an intermediate frequency induction furnace is a very important step. Today we have sorted out some safe operating procedures for intermediate frequency induction furnaces, let's take a look with everyone below.   Operation steps of medium frequency induction furnace 1. Before starting the furnace, the operator of the intermediate frequency unit should be notified to start the unit. At the same time, check whether the furnace body, cooling water system, intermediate frequency power switch, furnace tilting m

Induction Furnace Repair

Induction Furnace Repair Intermediate frequency furnace inductor fault repair method Today, the editor of Luoyang Wanfeng Industrial Furnace will introduce the problem of sensor fault maintenance. The inductor in the intermediate frequency furnace is an extremely important part, so it is extremely important to master the maintenance and repair of the inductor. Maintenance time of induction coil of intermediate frequency electric furnace 1. Once a month, check whether the coil insulation of the intermediate frequency furnace is raised or partially carbonized, and wash it with workshop air. 2. Check once a month whether there are attachments on the surface, and blow it with compressed air in the workshop. 3. Check whether the intermediate frequency furnace coil insulation board is extended in the repair room every month. 4. Check the assembly screws of the lifting coil every three months to tighten the screws. 5. Weekly visual inspection for loose helical compression springs 6. Check whe

Induction Furnace Refractory Lining Materials

Induction Furnace Refractory Lining Materials Refractory Materials for Induction Furnace Should Meet the Conditions Requirements that Refractory Materials Should Meet Furnace lining refractory materials , no matter whether they are used for heart induction furnaces or centerless induction furnaces, should meet the following requirements. (1) have the good chemical stability Metal aluminum and aluminum alloys not only have high chemical activity but also have excellent fluidity of the melt. The viscosity of molten aluminum at 750°C is only 1.04 centipoise, which is quite close to the viscosity of water at 20°C (1.0 centipoise), which is the main reason why it easily penetrates into the furnace lining and undergoes chemical reactions. At the temperature where the liquid aluminum is in contact with the refractory material, aluminum acts as a strong reducing agent. SiO2, TiO2, FeO, and other oxides in refractory materials should be reduced by aluminum. The reaction between the molten alumi

Induction Furnace Repair Services

Induction Furnace Repair Services Energy-saving intermediate frequency furnace - matters needing attention in maintenance In induction furnace repair services, the energy-saving intermediate frequency furnace needs attention not only before the furnace is turned on, after the furnace is turned on, but also during maintenance. The intermediate frequency induction furnace should check the electrical equipment, cooling water system, induction switch air conditioning copper pipe, etc. before starting the furnace. After the furnace is turned on, when discharging, it is necessary to check the scraps returned to the furnace to prevent infiltration of inflammable and explosive materials and other hazardous materials. When maintaining the energy-saving intermediate frequency furnace, the high-frequency generator room should be kept clean, and the accumulation of flammable and explosive materials should be prohibited. After the energy-saving intermediate frequency furnace is ignited, when discha

Induction Furnace Frequency Selection

Induction Furnace Frequency Selection How to Choose Different Frequencies For Medium Frequency Induction Furnace? Today, I will introduce to you how to choose different frequencies for the intermediate frequency induction furnace. The induction furnace whose frequency is in the range of 150-10000 Hz is called the intermediate frequency induction furnace. The intermediate frequency induction furnace is a special smelting equipment suitable for smelting high-quality steel and alloys. It has the advantages of fast melting speed, high production efficiency, strong adaptability, flexible use, good electromagnetic stirring effect, convenient start-up and operation, and molten steel is covered by slag (reducing atmospheric Pollution to molten steel) and other advantages. The complete set of equipment of the intermediate frequency induction furnace includes the power supply and electrical control part, furnace body part, transmission device, and water cooling system. The intermediate frequency