Home> Products> Ferrite Disk Magnets> Sintered Round Anisotropic Magnetism Black Magnet
Sintered Round Anisotropic Magnetism Black Magnet
Sintered Round Anisotropic Magnetism Black Magnet
Sintered Round Anisotropic Magnetism Black Magnet
Sintered Round Anisotropic Magnetism Black Magnet
Sintered Round Anisotropic Magnetism Black Magnet
Sintered Round Anisotropic Magnetism Black Magnet

Sintered Round Anisotropic Magnetism Black Magnet

Payment Type:T/T

Incoterm:FOB,EXW,CIF

Min. Order:100000 Piece/Pieces

Transportation:Ocean,Land,Air,Express

Port:Guangzhou,Shenzhen,Ningbo

Product Description
Product Attributes

BrandYubang

Place Of OriginChina

SpeciesPermanent

CompositionFerrite Magnet

ApplicationIndustrial Magnet

Tolerance±1%

Processing ServiceMoulding, Punching, Cutting

ShapeRound

GradeC5,C8,etc

Free SampleAvailable

Delivery Time8-20 days

PricePlease contact us for the exact price.

Supply Ability & Additional Information

PackagingCarton,pallet

TransportationOcean,Land,Air,Express

CertificateISO9001,SGS,ROHS,CE,MSDS

HS Code8505190090

PortGuangzhou,Shenzhen,Ningbo

Payment TypeT/T

IncotermFOB,EXW,CIF

Packaging & Delivery
Selling Units:
Piece/Pieces
Package Type:
Carton,pallet
Picture Example:
Download
Ferrite magnet disc
ferrite disc magnet
Round ferrite magnet

Round Ceramic Magnet / Ferrite Disk Magnets

ferrite disc magnet size

(Size of Anisotropic Ferrite Magnets)

Ceramic Magnet Disc (hard ferrite Disc Magnet) is among the most economical magnets available and are commonly used in manufacturing, craft and hobby applications.


Features & Benefits of Ceramic Ferrite Magnet

Ceramic Ferrite Magnets are a dark charcoal gray in color and do not appear metallic.
Some ceramic disc magnets can be magnetized with several poles on one face to give greater holding strength on that surface. (This gives a lower holding force on the opposite surface.)
Ceramic ferrite magnets are not suited for high-temperature applications (over 250° C)


Ferrite Magnet Disc 12 Jpg

(Ferrite disc magnet)

Tips:

1) Consider the decrease of intrinsic coercivity at low temperature to avoid demagnetization.

2) A ferrite magnet is especially hard and fragile. When it is exposed to vibration or impacts, design the structure properly.

3) When thermal shock is applied to a magnet, magnet breakage may occur. Never expose a magnet to thermal shock such as a rapid heating or cooling speed.

4) If magnets rub against each other during transportation, magnet powder may be seen on the surface

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