Home> Products> Ferrite Pump Magnets> 12V Solar Water Pump Magnet 4-Poles Magnet Rotor
12V Solar Water Pump Magnet 4-Poles Magnet Rotor
12V Solar Water Pump Magnet 4-Poles Magnet Rotor
12V Solar Water Pump Magnet 4-Poles Magnet Rotor
12V Solar Water Pump Magnet 4-Poles Magnet Rotor
12V Solar Water Pump Magnet 4-Poles Magnet Rotor
12V Solar Water Pump Magnet 4-Poles Magnet Rotor

12V Solar Water Pump Magnet 4-Poles Magnet Rotor

Payment Type:T/T

Incoterm:FOB,CIF,EXW

Min. Order:10000 Piece/Pieces

Transportation:Ocean,Land,Air,Express

Port:Shenzhen,Guangzhou,Ningbo

Product Description
Product Attributes

BrandYubang

Place Of OriginChina

SpeciesPermanent

CompositionFerrite Magnet

ApplicationIndustrial Magnet

Supply Ability & Additional Information

TransportationOcean,Land,Air,Express

CertificateISO9001,SGS,ROHS,REACH,MSDS

HS Code85051900

PortShenzhen,Guangzhou,Ningbo

Payment TypeT/T

IncotermFOB,CIF,EXW

Packaging & Delivery
Selling Units:
Piece/Pieces
Picture Example:
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bossgoo-magnet picking
sintered ferrite magnet rotor
magnetic power testing

The production of Ferrite Magnet Rotor.

The production of Ferrite Magnet Rotor involves several steps. Here is a general overview of the process:


1. Material selection: The first step is to select the appropriate ferrite material for the rotor. Ferrite Permanent Magnets are typically made from a mixture of iron oxide and other metal oxides, such as strontium or barium.


2. Mixing: The selected materials are mixed together in a specific ratio to create a homogeneous mixture. This mixture is typically in powder form.


3. Pressing: The mixed powder is then compacted using a hydraulic press. This process helps to shape the powder into the desired rotor shape. The compacted powder is known as a green compact.


4. Sintering: The green compact is then heated at a high temperature in a controlled atmosphere. This process, known as sintering, helps to fuse the particles together and form a solid structure. The sintering temperature and time are critical factors that determine the final magnetic properties of the rotor.


5. Machining: Once the sintering process is complete, the rotor is machined to achieve the desired dimensions and tolerances. This may involve processes such as grinding, milling, or cutting.


6. Magnetizing: After machining, the rotor is magnetized using a strong magnetic field. This process aligns the magnetic domains within the material, creating a Permanent Ferrite Magnet.


7. Surface treatment: Depending on the application, the rotor may undergo additional surface treatments to improve its performance or protect it from corrosion. This can include coating the rotor with a protective layer or applying a protective plating.


8. Quality control: Throughout the production process, various quality control checks are performed to ensure that the finished rotor meets the required specifications. This can include dimensional checks, magnetic field strength measurements, and visual inspections.


9. Packaging: Finally, the finished Ferrite Magnet Rotor is packaged and prepared for shipment to the customer.


It's important to note that the specific production process may vary depending on the manufacturer and the intended application of the Permanent Magnet Rotor.

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