跳至主要内容

Advantages of Induction Heating

Induction Heating

Advantages of Induction Heating

Why choose induction heating instead of convection, radiation, open flame, or other heating methods?

The main benefits of induction heating for manufacturing are briefly described below:

Maximize Production Efficiency


Induction heating is fast, which can greatly improve production efficiency; heat can be generated directly and quickly inside the workpiece (for example, it can reach more than 1000 ℃ in 1 second). Starts up very quickly; no warm-up or cooling is required. The induction heating process can be done at the processing site near the cold or hot rolling mill without the need to send the workpieces in batches to remote furnace areas or subcontractors.

Energy Saving


This unique energy-saving process converts 90% of the energy into effective heat; the energy efficiency of conventional furnaces is only about 45%. And because induction heating does not require preheating and cooling cycles, standby heat loss is minimized.

Control and Automate Processes


Induction heating eliminates inconsistencies and quality problems associated with open flames, flaming, and other heating methods. After the system is properly calibrated and installed, errors can be eliminated, and the heating process is accurate and consistent.

Precise temperature control can be achieved with GH power, and the power can be turned on or off instantly. Through closed-circuit temperature control, the advanced induction heating system can measure the temperature of each different workpiece. It can set special heating, constant temperature, and cooling speed, and can record the data of each running workpiece.

Product Quality


With induction heating, the workpiece to be processed does not need to be in direct contact with a flame or other heating medium, but an induced current is generated inside the workpiece through an alternating current. As a result, product thermal deformation and reject rates are minimized. In order to improve product quality, the workpiece is enclosed in a vacuum environment, in an isolated container filled with an inert gas, or a reducing gas to eliminate the effect of oxidation.

Green Energy


Induction heating systems do not consume traditional fossil fuels; induction heating is a clean and non-polluting process that benefits the environment. The induction heating system does not generate smoke, heat waves, toxic gases, and noise, which can improve the working conditions of workers. Induction heating is safe and efficient and does not create open flames that could threaten worker safety or adversely affect the process. Has no effect on non-conductive materials and can be placed near heated areas without damage.

Using GH induction heating solutions can improve the working and maintenance conditions of equipment, avoid production failures, reduce energy consumption, and improve workpiece quality control.

Please contact stella@hanrm.com for a quotation.
And free send inquiries to us.
Email: stella@hanrm.com   stellarollingmill@gmail.com   inquiry99@hanimetallurgy.com
Whatsapp/Wechat:+8615877652925


induction heating solutions


More News You May Interesting:

Industrial Frequency Induction Furnace

Melting Features of Medium Frequency Electric Furnace

Electric Arc Furnace VS Intermediate Frequency Furnace

Cause Analysis and Solution of Induction Coil Blocking in Medium Frequency Smelting Furnace

Why Intermediate Frequency Furnace cannot be Turned on Normally?

Energy Efficiency Control System of Submerged Arc Furnace

Furnace Transformer – Electric Arc Furnace

What is Induction Furnace?

How does a Blast Furnace Work?

Significance of Reheating Furnace Technology in Rolling Reheating Furnace

Why Use Coke for Blast Furnace Ironmaking does not Use Coal Directly?

How to Improve the Thermal Efficiency of the Reheating Furnaces?

What is the Reheating Furnace Temperature System?

Advantages of Walking Beam Reheating Furnace

Walking Beam Reheating Furnace

The Development Trends and Advantages of Electric Arc Furnaces

The Advantage of Induction Furnace ( Medium Frequency Furnace)


评论

此博客中的热门博文

Application Range of Medium Frequency Induction Furnace

  Application Range of Medium Frequency Induction Furnace (1) Intermediate frequency induction furnace is used for forging and rolling 1. Wheel forgings, ring forgings, shaft forgings, cylinder forgings, gear forgings, stainless steel forgings, and large flanges. 2. Hot heading of standard parts and fasteners, such as heating for tempering, forging, and extrusion of high tools. 4. Quenching and tempering of bar materials (2) Intermediate frequency induction furnaces are used for smelting   Including the smelting of steel, gold, silver, copper, and aluminum, especially in the foundry industry (3) Intermediate frequency induction furnace is used for heat treatment 1. Heat treatment of various hardware tools and hand tools. Such as pliers, wrenches, screwdrivers, hammers, axes, etc. 2. High-frequency hardened crank pins, sprockets, camshafts, valves, various rocker arms, rocker shafts for various auto parts and motorcycle parts; various gears, spline shafts, transmission axles, High-frequ

Troubleshooting of Medium Frequency Furnace

Troubleshooting of Medium Frequency Furnace This article introduces the faults and solutions of medium frequency furnace. 1. Fault phenomenon: large DC current, low DC voltage, and if the voltage, dull equipment sound, over-current protection. Analysis and treatment: the thyristor with one arm of the inverter bridge may be short-circuited or open-circuited, resulting in the operation of the three-arm inverter bridge. Use an oscilloscope to observe the voltage drop waveform of the thyristor on the four bridge arms of the inverter bridge. If the voltage drop waveform of the thyristor on one bridge arm is a line, the thyristor has been through; if it is a sine wave, the thyristor has not been through. Replace the through thyristor; find out the reason why the thyristor is not turned on. 2. Fault phenomenon: when the heavy load cold furnace is started, all electrical parameters and sounds are normal, but the power cannot be raised, and overcurrent protection. Analysis and

Advantages and Disadvantages of Electric Arc Furnace and Induction Furnace Steelmaking

Electric Arc Furnace VS Induction Furnace Steelmaking Comparison of advantages and disadvantages of electric arc furnace and induction  furnace steelmaking 1. The induction furnace heats up quickly and has high thermal efficiency. The heat is generated inside the charge (steel liquid), so the heating is fast. In the arc furnace, the heat of the arc after the material is cleared must be transferred to the molten steel through the slag, which is indirect heating. Thermal efficiency is poor. The furnace is in the shape of a basin, and a large part of the heat of the arc is lost through the furnace cover and the furnace wall. 2. The oxidative burning loss of elements in induction furnace steelmaking is less. Because there is no ultra-high temperature action of the arc in the induction furnace steelmaking, the burning rate of the elements in the steel is low. 3. In the induction furnace steelmaking, the composition and temperature of the molten steel are relatively uniform.