Home> Products> Ferrite Permanent Magnets> Anisotropic Ferrite Magnet Rotor> Ferrite magnet rotor,motor permanent magnet rotor
Ferrite magnet rotor,motor permanent magnet rotor
Ferrite magnet rotor,motor permanent magnet rotor
Ferrite magnet rotor,motor permanent magnet rotor
Ferrite magnet rotor,motor permanent magnet rotor
Ferrite magnet rotor,motor permanent magnet rotor
Ferrite magnet rotor,motor permanent magnet rotor

Ferrite magnet rotor,motor permanent magnet rotor

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

Model No.D16*25MM

BrandYB

Place Of OriginChina

SpeciesPermanent

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

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

ApplicationIndustrial Magnet

Tolerance±1%

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

Product NameAnisotropic Ferrite Magnet Rotor

Material GradeY30,Y30BH

Impeller MaterialPOM,Nylon,PPO

CertificateCE,ROHS,MSDS

Quality CertificateISO9001

BrandYB

Supply Ability & Additional Information

Packagingcarton package and then packed in pallet

Productivity30000000pcs per month

TransportationOcean,Land,Air,Express,Others

Place of Origin China

Supply Ability30000000pcs 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 pallet
Picture Example:
Download
16x25 cooler pump magnet

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Ferrite magnets, also known as ceramic magnets, are made of iron oxide and strontium or barium carbonate. They are relatively inexpensive and have a low magnetic strength, but they are resistant to corrosion and can withstand high temperatures. They are commonly used in motors, speakers, and refrigerator magnets.


production process of injection moulded Pump Magnet


1. Designing the mold: The first step is to design the mold that will be used to create the pump magnet. The design will typically include the shape, size, and features of the magnet, as well as any necessary cavities or channels for the injection molding process.

2. Preparing the materials: The materials used for injection molding typically include thermoplastics such as nylon, polycarbonate, or polypropylene. These materials are melted down and then injected into the mold.

3. Injection molding: The next step is to inject the melted plastic into the mold. This is typically done using a machine that applies pressure to the plastic and forces it into the mold.

4. Cooling: Once the plastic has been injected into the mold, it needs to cool and solidify. This is typically done by cooling the mold with water or air.

5. Ejecting the magnet: Once the plastic has cooled and solidified, the mold is opened and the pump magnet is ejected. This is typically done using a mechanical ejector system.

6. Finishing: The pump magnet may then undergo additional finishing processes, such as trimming or polishing, to achieve the desired final shape and surface finish.

7. Quality control: Finally, the pump magnet is inspected to ensure that it meets the required quality standards. This may involve visual inspection, dimensional measurement, or other testing methods.

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The material grade for ferrite Magnet Rotor

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The available sizes for Anisotropic Ferrite Magnet

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The artwork for Ferrite Magnet Rotor

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Ferrite Magnet Rotor made of Anisotropic Ferrite Magnet and Impeller

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Electric kilns consist of several components, including the heating elements, the temperature controller, the thermocouple, and the kiln shell. The heating elements are responsible for generating heat and are made of high-temperature resistance wires. The temperature controller regulates the temperature inside the kiln and ensures that it stays within the desired range. The thermocouple is a sensor that measures the temperature and sends signals to the temperature controller. The kiln shell is made of heat-resistant materials and provides insulation to maintain the temperature inside the kiln.

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Electric kilns are versatile and can be used for various types of firing, including bisque firing, glaze firing, and low-temperature firing. They are also easy to use and require minimal maintenance. However, they can be expensive to purchase and operate, and they require a dedicated electrical circuit to function properly.

Overall, electric kilns are an essential tool for pottery and ceramics artists who want to create high-quality pieces. With the right equipment and techniques, artists can achieve beautiful and unique results that are sure to impress.


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