Home> Products> Submersible Pump Magnet> 16x25 ferrite rotor magnets for water pump
16x25 ferrite rotor magnets for water pump
16x25 ferrite rotor magnets for water pump
16x25 ferrite rotor magnets for water pump
16x25 ferrite rotor magnets for water pump
16x25 ferrite rotor magnets for water pump
16x25 ferrite rotor magnets for water pump
16x25 ferrite rotor magnets for water pump
16x25 ferrite rotor magnets for water pump

16x25 ferrite rotor magnets for water pump

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.D10.5*16mm

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

ApplicationMoto Magnet

Tolerance±1%

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

Product NameCooler pump magnet

Material GradeY30,Y30BH

Impeller MaterialPOM,Nylon

Tolerance-0.02-(-0.05mm)

BrandYB

Applicationcooler pump

CertificatesCE,ROHS,MSDS

Quality CertificatesISO9001

Delivery Time7-15 days

Supply Ability & Additional Information

Packagingcarton package and then packed in pallet

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 pallet
Picture Example:
Download
16x25 cooler pump magnet

What's Permanent Magnet Rotor?

 A Cooler Water Pump Magnet is a type of rotor used in electric motors, generators, and other electromagnetic devices. It is made up of a series of anisotropic ferrite magnets that are made from a type of ceramic material called ferrite. These magnets are arranged in a specific pattern around the rotor, which creates a magnetic field when the rotor spins. Ferrite Magnet Rotors are known for their high magnetic strength, low cost, and durability, making them a popular choice for a variety of industrial and consumer applications.



                                                                               The production process for Anisotropic Ferrite Magnet Rotor


The first step is to prepare the raw materials, which include ferrite powder, binder, and other additives.The raw materials are then mixed together in a specific ratio to form a homogeneous mixture.The mixing process is critical to ensure that the final product has the desired magnetic properties.The mixture is then pressed into a specific shape using a hydraulic press. The pressing process helps to compact the mixture and remove any air pockets.

Sintering: The pressed product is then sintered in a furnace at a high temperature. This process helps to fuse the particles together and create a solid structure.

Machining: The sintered product is then machined to the desired shape and size. This step is critical to ensure that the final product meets the required specifications.

The final step is to magnetize the product using a magnetizing machine. This process aligns the magnetic domains in the material and creates a magnetic field.The finished product is then inspected for quality and packaged for shipment.

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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

Ferrite Magnet Rotor made of Anisotropic Ferrite Magnet and Impeller

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Electric kilns are essential equipment for pottery and ceramics artists who need to fire their work at high temperatures. These kilns are powered by electricity and can reach temperatures of up to 2300°F. They come in different sizes and shapes, from small tabletop models to large industrial kilns.

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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