மின்காந்த கிளறல்

மின்காந்த கிளறல்

அலுமினிய ஸ்கிராப் ப்ரொப்பல்லர் பிரஸ்: அலுமினிய ஸ்கிராப் ப்ரொப்பல்லர் பிரஸ்: , ,

அலுமினிய ஸ்கிராப் ப்ரொப்பல்லர் பிரஸ்

மின்காந்த கிளறல்

மின்காந்த கிளறல்

தி electromagnetic stirrer (EMS) of the melting furnace applies the working principle of a linear motor and is a non-contact stirring device.

An electromagnetic stirrer for the smelting furnace is installed at the bottom (or side of the furnace).

When two-phase alternating current is fed to the electromagnetic stirrer of the smelting furnace, a traveling wave magnetic field is generated.

Due to the action of this magnetic field, an induced electric potential is generated in the solution, thus generating an Induced current (following the right-hand rule).

The induced current interacts with the local magnetic field to generate electromagnetic thrust in the solution, pushing the solution to move in a directional manner.

The essence of the electromagnetic stirrer (EMS) is to use the electromagnetic force induced in the liquid phase cavity to enhance the movement of molten aluminum.

Specifically, the alternating magnetic field excited by the stirrer penetrates into the molten aluminum and induces a current in it.

This induced current interacts with the local magnetic field to generate an electromagnetic force.

The electromagnetic force is a volume force that acts on the volume element of the molten aluminum, which can promote the movement of molten aluminum.

விண்ணப்பம்:

It is widely used for stirring needs in the smelting process of medium and small tonnage furnaces in non-ferrous metallurgy.

This product is mainly installed at the bottom (or side of the furnace) of the melting furnace.

It is used in the configuration of alloy aluminum or high-purity aluminum in the aluminum industry; it is used in the steel industry to homogenize the ingredients and temperature of LF or EF furnaces to reduce energy consumption and control the temperature of the solution.

அம்சங்கள்:

1. Make the alloy composition of the melt uniform.

பொதுவாக, stirring with a magnetic stirring device (no more than 20 நிமிடங்கள்) can make the relative deviation of the chemical composition of various elements in the entire aluminum melt less than 10%, which can meet the composition uniformity requirements of almost all alloys.

2. The stirring process does not destroy the oxide layer, can reduce the hydrogen and oxygen absorption of the melt, ensure the quality of the melt, and reduce burning loss (relative value) by 20 செய்ய 25%.

3. It can make the temperature of the upper and lower parts of the melt uniform.

பொதுவாக, stirring for three to five minutes can reduce the ultimate temperature difference of the melt to within 10°C.

எனவே, the melting temperature can be lowered, the melting speed of the alloy components at the bottom of the melt can be increased, and the burning loss can be reduced while lowering the melting temperature.

4. The use of magnetic stirring technology during the remelting process of aluminum ingots can shorten the melting time, improve labor efficiency, and reduce energy consumption.

According to data provided by users who have used this equipment, energy consumption can be reduced (improved efficiency) by 20 செய்ய 30%.

5. Does not pollute the aluminum melt.

This is of great significance for the melting of high-purity aluminum and alloys with strict control of iron elements.

வேலை கொள்கை

The working principle of the electromagnetic stirrer for an aluminum smelting furnace is the same as that of the linear motor.

The inductor coil can be thought of as the stator of the motor, and the molten aluminum is equivalent to the rotor of the motor.

The variable frequency power supply converts 50/60Hz industrial frequency AC power into a low-frequency power supply with a frequency of 0.5 to 3.0Hz. After the power supply is passed into the inductor coil, a traveling wave magnetic field will be generated.

This traveling wave magnetic field penetrates the stainless steel plate and furnace lining at the bottom of the furnace and acts on the aluminum melt, causing the aluminum melt to move regularly, thereby achieving the purpose of stirring.

Changing the voltage, frequency and phase of the variable frequency power supply can change the size and direction of the stirring force.

Models and technical parameters:

அலுமினிய ஸ்கிராப் ப்ரொப்பல்லர் பிரஸ் BSJB5Z BSJB10Z BSJB20Z BSJB30Z BSJB40Z BSJB50Z
Stirrer technical parameter

 

திரும்பும் வேகம்

(அலுமினிய ஸ்கிராப் ப்ரொப்பல்லர் பிரஸ்)

3000 3200 3300 3400 3500 6800
1400 1600 1700 1800 1900 1800
1500 1550 1630 1630 1750 1630
Width of stainless steel (அலுமினிய ஸ்கிராப் ப்ரொப்பல்லர் பிரஸ்) 1650 1965 2160 2160 2260 2160
Height stroke≤ 350 350 450 450 450 450
Stirrer Motor Power KW 11 15 18.5(22) 22 30 30/22*2
Application furnace(அலுமினிய ஸ்கிராப் ப்ரொப்பல்லர் பிரஸ்) 2-5 5-15 15-25 25-35 35-45 45-55
எடை(kg) 3820 4260 4750 5200 5900 10400
The sensor technical parameter
சக்தி(கி.வ) 6.2 10.8 16 25.7 30.8 41.2

Direct current electricity

(DCA)

20 30 40 50 60 80
Direct Current Voltage(DCV) 310 360 410 514 514 514
Coil working temperature≤

160℃

Magnetic field alternating rate

0-1.5HZ

 

Installation methods of EMS

Electromagnetic stirring devices have different installation ways in different applications. Depending on the installation form and location, electromagnetic stirring devices for aluminum melting furnaces mainly includefurnace bottom induction type” மற்றும் “side wall induction type”.

The most commonly used in our country is the inductor installed at the bottom of the furnace, அது, the furnace bottom induction electromagnetic stirring device.

Because in this form, the sensor is installed at the furnace bottom, and the magnetic field penetrates the refractory material at the furnace bottom and acts on the aluminum liquid.

According to the spatial distribution of the magnetic field and the law of action inside the molten metal, அது, the principle of magnetohydrodynamics, The melt near the bottom of the furnace is affected by a larger magnetic field force, while the upper part of the melt is affected by a relatively smaller magnetic field force.

இந்த வழியில், the flow rate and flow rate of the part closer to the furnace bottom (the sensor installation position) inside the melt is greater, and it has a larger acting area.

The strong surge of a large amount of middle and lower melt drives the entire The furnace melt flows regularly according to the action of magnetic field force.

எனவே, the stirring effect is obvious and the overall economic benefit is high.

The side wall induction electromagnetic stirring device is mainly designed for some special applications or the renovation of old furnaces (can only be installed on the side wall of the furnace).

Its working principle is similar to that of the furnace bottom induction electromagnetic stirring device.






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