Home> Products> Ferrite Disk Magnets> 6mmx3mm thick Ceramic Ferrite Magnet Round
6mmx3mm thick Ceramic Ferrite Magnet Round
6mmx3mm thick Ceramic Ferrite Magnet Round
6mmx3mm thick Ceramic Ferrite Magnet Round
6mmx3mm thick Ceramic Ferrite Magnet Round
6mmx3mm thick Ceramic Ferrite Magnet Round
6mmx3mm thick Ceramic Ferrite Magnet Round

6mmx3mm thick Ceramic Ferrite Magnet Round

Payment Type:T/T,Others

Incoterm:FOB,CFR,CIF,EXW,DDP,DDU,Express Delivery

Transportation:Ocean,Land,Air,Express,Others

Port:Guangzhou,Shenzhen,Ningbo

Product Description
Product Attributes

BrandYB

Place Of OriginChina

SpeciesPermanent

CompositionRare Earth Magnet, Ferrite Magnet, Neodymium Magnet, Plastic Magnet, Ndfeb Magnet, Alnico Magnet, Rubber Magnet

ShapeBall, Coil, Block, Cup Shape, Strip, Stick, Bar, Pot / Cup Shape, Sheet

ApplicationJewelry Magnet

Tolerance±1%

Processing ServiceBending, Welding, Decoiling, Cutting, Punching, Moulding

Product Nameferrite magnets round magnets

Material GradeY10T,Y25,Y30,Y30BH,Y35

ColorBlack

TypePermanent

BrandYB

Working Temperature80-250℃

Quality CertficatesISO9001

CertificatesCE,ROHS,MSDS

Delivery Time7-15 days

Supply Ability & Additional Information

Packagingcarton package and then packed in pallets

Productivity3000000pcs per month

TransportationOcean,Land,Air,Express,Others

Place of OriginChina

Supply Ability3000000pcs per month

CertificateISO9001

HS Code8505190090

PortGuangzhou,Shenzhen,Ningbo

Payment TypeT/T,Others

IncotermFOB,CFR,CIF,EXW,DDP,DDU,Express Delivery

Packaging & Delivery
Selling Units:
Piece/Pieces
Package Type:
carton package and then packed in pallets
Picture Example:
Download
ferrite disc magnet
Ferrite magnet disc

What's Permanent Ferrite Magnet?

A permanent ferrite magnet, also known as a Ceramic Magnet, is a type of magnet made from a composite of iron oxide and barium or strontium carbonate. It is a low-cost and widely used magnet due to its strong magnetic properties and high resistance to demagnetization.

Permanent Ferrite Magnets have a high coercivity, meaning they are difficult to demagnetize. They have a relatively low magnetic field strength compared to other types of magnets, such as neodymium magnets, but they are still suitable for many applications.

These magnets are commonly used in various industries and applications, including motors, speakers, magnetic separators, magnetic therapy devices, and refrigerator magnets. They are also used in educational toys and experiments.

Permanent ferrite magnets are brittle and can break easily, so they need to be handled with care. They are resistant to corrosion and can operate in high-temperature environments, making them suitable for outdoor and industrial applications.

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The production of Permanent Ferrite Magnet?

The production of permanent ferrite magnets involves several steps. Here is a general overview of the process:

1. Raw materials: The main ingredients used in ferrite magnet production are iron oxide (Fe2O3) and strontium carbonate (SrCO3) or barium carbonate (BaCO3). These materials are mixed in specific proportions according to the desired magnetic properties of the final product.

2. Mixing: The iron oxide and carbonate powders are mixed together in a ball mill or a similar grinding machine. This ensures a homogenous distribution of the particles and helps in achieving the desired magnetic properties.

3. Forming: The mixed powder is then pressed into the desired shape using a hydraulic press. The press applies high pressure to compact the powder into a solid mass. The shape can be a disc, block, or any other desired form.

4. Sintering: The formed magnets are then subjected to a high-temperature sintering process. This involves heating the pressed shapes in a furnace at temperatures ranging from 1000 to 1300 degrees Celsius. The sintering process helps in bonding the particles together and transforming the pressed shapes into a solid magnet.

5. Machining and finishing: After sintering, the magnets are machined to achieve the desired dimensions and surface finish. This can involve processes like grinding, cutting, and polishing.

6. Magnetization: The final step in the production process is magnetization. The magnets are subjected to a strong magnetic field to align the magnetic domains within the material. This ensures that the magnet exhibits a strong magnetic field in the desired direction.

7. Quality control: Throughout the production process, various quality control measures are implemented to ensure that the magnets meet the required specifications. This can include testing the magnetic properties, dimensions, and overall quality of the finished magnets.

It is important to note that the specific production process may vary depending on the manufacturer and the desired magnet specifications.

If you still need Teaching Ferrite Magnet,Anisotropic Ferrite Magnet Rotor,Anisotropic Cylinder Ferrite Magnets,Sintered Neodymium Magnet,feel free to contact us.

Ceramic Magnet Production Process Jpg

Hunan Yubang Magnet 2Hunan Yubang Magnet

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