Home> Products> Ferrite Permanent Magnets> Anisotropic Ferrite Magnet Rotor> 12*18 injection molded magnet with metal shaft
12*18 injection molded magnet with metal shaft
12*18 injection molded magnet with metal shaft
12*18 injection molded magnet with metal shaft
12*18 injection molded magnet with metal shaft
12*18 injection molded magnet with metal shaft
12*18 injection molded magnet with metal shaft

12*18 injection molded magnet with metal shaft

Payment Type:T/T

Incoterm:FOB,CFR,CIF,EXW,DDP

Min. Order:10000 Piece/Pieces

Transportation:Ocean,Land,Air,Express

Port:Guangzhou,Ningbo,Shanghai

Product Description
Product Attributes

Model No.YB-R

BrandYB

Place Of OriginChina

SpeciesPermanent

CompositionFerrite Magnet

ApplicationIndustrial Magnet

Tolerance±1%

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

Sizemulti size

GradeY30/Y30BH

Compositeferrite magnet, POM,Nylon

SampleAvailable

Supply Ability & Additional Information

PackagingCarton packing, then in wood pallet

Productivity3 millions per month

TransportationOcean,Land,Air,Express

Place of OriginChina

Supply Ability3 millions per month

CertificateISO9001

HS Code85051900

PortGuangzhou,Ningbo,Shanghai

Payment TypeT/T

IncotermFOB,CFR,CIF,EXW,DDP

Packaging & Delivery
Selling Units:
Piece/Pieces
Package Type:
Carton packing, then in wood pallet
Picture Example:
Download
Sintering process workshop
The selection of ferrite magnet rotor
Sintering process workshop

Pump Magnet

    Applications      

motor

Ferrite magnet, sometimes referred to as Ceramic Magnet, because of the production process, is the least expensive class of Permanent Magnet materials. This material became commercially available in the mid 1950s, and has since found its way into countless applications including arc shaped magnets for motors, magnetic chucks, and magnetic tools.

Ferrite Magnet Powder
The raw material, iron oxide, for these magnets is mixed with either strontium or barium and milled down to a fine powdered form. The powder is then mixed with a ceramic binder and magnets are produced through a compression or extrusion molding technique that is followed by a sintering process. The nature of the manufacturing process results in a product that frequently contains imperfections such as cracks, porosity, chips, etc. Fortunately, these imperfections rarely interfere with a magnet’s performance.
Disc Magnet
To enhance a ceramic magnet’s performance, the ferrite compound may be biased by a magnetic field during the pressing process. This biasing induces a preferred direction of magnetization within the magnet, significantly reducing its performance in any other orientation. Consequently, ceramic magnets are available in both oriented (Anisotropic Ferrite Magnets) and non-oriented (Isotropic Ferrite Magnets) grades. Because of its lower magnetic properties, the isotropic grade of ferrite is typically utilized where complex magnetization patterns are required, and in process biasing would be cost prohibitive.
Ceramic Magnet Production Process Jpg

Ceramic magnet is inherently brittle, and it is highly recommended that they NOT be utilized as structural elements in any application. The thermal stability is the poorest of all the magnetic families, but they may be utilized in environments up to 300 Deg C (570 Deg F). The dimensional repeatability of as pressed components is difficult to control, consequently, components requiring tight tolerances necessitate secondary grinding operations to assure conformity.
Anisotropic Magnet Shape

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