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Metallic Separator in Post-consumer PET Plastic Flake and Regrind Recycling
Eddy current separators (ECS) provide superior non ferrous metals removal in recycled PET bottle plastic flakes and regrind recycling applications. could effctivily make the aluminum, brass, bronze, copper and other metallic be separated from the post-consumer PET stream. also suitable for non ferrous materials removes from the bottle recycling process
These eccentric pole type eddy current separator designed to produce exceptionally high gauss at the belt's surface, with a large number of magnetic poles operating at higher rpms creates ultra high-frequency changes resulting superior separation of nonferrous metal scraps.
Besided the non-ferrous eddy current separator , The ferromagnetic metal removal system such as the suspension magnetic separator and high intensity roller please very important roles for harmful magnetic particle separation in recycled PET bottle and regrind recycling applications
Except in recycled plastic processing m the those magnetic eddy current separators are essential for removes ferromagnetic / non-ferrous metallics from glass cullet, electronic scrap, automobile shredder residue (ASR), boiler bottom ash, spent foundry core sand, municipal solid waste (MSW), co-mingled recyclables, urban wood waste and mixed metals
Application of eddy currents light metal recycling machine
1.For various of light metal recovery in various industries
End-of-Life vehicle (ELVs) recycling industry
in End-of-Life domestic application
auto shredder residue(ASR)recycling
shredded and pre-treated co-mingle recyclables metal (Zorba) recycling industry
slags recycling that produced by waste incineration facilities
steel slag scraps recycling industry
crushed Bulky city waste recycling
Aluminum alloy dross recovery from foundry sand in aluminum-shell-sand recycling lines.
non-ferrous scrap from crushed waste electrolytic capacitors
2.For harmful contamination light metal scraps removal . to improve the taste make sure material`s purification
aluminum caps and rings removal from cullet in glass recycling
aluminum separation in UPVC window recycling.
Brass rivets and hinges separation in timber recycling industry.
Mixed aluminum flakes separation in plastic recycling industry
fixed aluminum scraps separation from crushed rubber .
Working Principle of eddy currents non-ferrous metal removal machine
Eddy current separators consist of The external drum shell of non-metallic composite material rotates at conventional belt conveyor speed.
ECS Eddy Current Separator consists of an external drum, internal permanent magnetic rotor, drive and belt conveyor. The magnetic rotor, which is positioned within a separately rotating non-metallic drum, revolves at around 3000 rpm during operation while the outer drum cover rotates at the speed of the Eddy Currents' belt conveyor. short belt conveyor that has its drive located at the return end and a high speed magnetic rotor system installed at the discharge end.
As the rotor spins at these high speeds, an electric current is induced into conducting metals. The induced electric current produces a magnetic field, which opposes the field created by the rotor, repelling the conducting metals over a pre-positioned splitter plate. The remaining materials such as plastics, glass and other dry recyclables will simply free-fall over the rotor, separating them from the repelled metals.
Important: When the waste(those that don't contain ferrous particles) travelling over the magnetic must be in a thin layer to allow the magnetic perform to its best, in case processed metal waste is mixed with ferrous metal. The Ideal format for any metal separation is first magnetic ferrous discharge, onto a vibration conveyor to spread out and further separate the remaining metals to allow the Eddy current magnetic to work at its optimal efficiency.
Suitable materials :
aluminum, brass, bronze, copper and other metallic separation from nonmetallic
aluminum/copper caps and rings separated from crushed glass bottles scrap |
aluminum/copper recovery from recyclable plastic scrap |
aluminum removal from rubber scraps/powder |
UBC(used drink metal cans) sorting |
aluminum scrap recovery from molding sand |
to Separate non-ferrous metals from wood waste |
Ejet can design and manufacture complete eddy current conveyor systems or simply furnish eddy current drums, other parts of magnetic separation equipment could be also supplied.
Eddy Current Separator devices are an effective way of removing non-ferrous metals from other
products. Application such as aluminum cans from municipal waste, aluminum flakes from
shredded PET, brass and aluminum from foundry sands, and metals from shredded automobile
scrap, other metals such as lead can also be removed. For successful non-ferrous separation,
a magnet should be installed prior to an Eddy Current Separator.
Standard Features and Benefits:
1. Ease of operation.
2. Eccentric Pole could be adjusted to achieve a better effect.
3. There would be signals when something is wrong with the machine, that would protect the Equipment from damage.
4. Advance lubrication system
Packing & Shipping
1. Packing: Export packing
2. Shipping time: 40 days after receiving the deposit
Company Information
Fushun Ejet Magnetic Equipment Co., Ltd is a manufacturer of Magnetic Equipment with well-equipped professional engineers and a strong technical force.
Our main products are eddy current separators, suspended magnetic separators, lifting magnets, etc.
With good quality and reasonable prices, our products are extensively used in solid waste treatment, metallurgical mines, power plants, coal mining and other industries. The products have been exported to the United States, Canada, Japan and Australia.
We welcome new and old customers to contact us for future business relationships and mutual success!
FAQ
1. What is the MOQ of your machine?
A: Our MOQ is 1 set
2. How long is the machine warranty period?
A: The product warranty period is 12 months
In order to give you the responsible quotation, pls kindly inform us the following details:
1. What kind of material you are going to deal with?
2. What's the granularity of the material?
3. What's the production capacity you are going to achieve?
The most suitable machine would be recommended to you according to your information.