Electrostatic Separation Machine
An electrostatic separation machine is a device that separates particles by mass in a low-energy charged beam. The electrostatic separation machine is widely used in our waste recycling machinery
Product Introduction
【Product Introduction】
Electrostatic separation machine is a highly efficient material separation equipment, which uses the principle of electrostatics to accurately sort the mixture. The equipment is mainly composed of electrostatic generator, sorting system, electronic control system and discharge system. Its working principle is based on the different electrical properties of materials. The charged roller generates static charge on the materials, and then under the action of the sorting plate, according to the different charges of the materials, they are separated into two types, positively charged and negatively charged, and finally transported to the corresponding collectors by the discharge system.
【Product Features】
Efficient Sorting
The electrostatic separation machine uses advanced electrostatic separation technology and can process 5-10 tons of materials per hour. Compared with traditional equipment, the processing efficiency is increased by about 40%.
Stable And Durable Structure
The frame of the electrostatic separation machine is made of high-strength Q345 steel, which is hot-dip galvanized to form a 80-100 micron thick zinc layer for corrosion resistance. The key electrodes are made of nickel-chromium alloy and reinforced with rare metals. The Rockwell hardness reaches HRC55-60 and the wear resistance coefficient is more than 3 times higher than that of ordinary metals. It can work continuously and stably for 15 years under normal conditions.


What Are The Steps In The Electrostatic Separation Machine To Separate Waste?
The first step is to charge the particles. When waste is fed into the machine, it is evenly distributed on the vibrating feeder and transferred to the rotating drum electrode. This drum features a high voltage direct current, which charges the particles due to the strong electric field between the drum and the grounded electrode.
The second step triggers the corona effect. The charged particles then move to the area where the electric field exists. Particles with higher conductivity lose their charge faster and regain their charge slower, resulting in a phenomenon known as the corona effect.
The last step is to separate the particles, which is based on their trajectories. Charged particles are affected by a combination of static electricity and gravity. Highly conductive particles follow a curved trajectory, while less conductive particles follow a relatively straight path, resulting in separation.
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