Magnetic Drive Pump solved work under corrosive, inflammable, explosive, toxic, leakage, and clean liquid environment. Permanent magnet in the magnetic drive pump refers to coupling magnet. Magnetic drive pump makes full use of performance of magnetic force on ferrous material and non-ferrous material.
The first generation magnet on pump magnet is ferrite magnet. It’s cheap and wide source. Due to poor magnetic performance, it limits the development of magnetic drive pump. The second generation magnet is samarium cobalt magnet and AlNiCo magnet. These two materials are better than ferrite, and let magnetic drive pump achieve large torque. But their cost is very high because material samarium and cobalt which used in smco and alnico are rare and strategic resource. It also restricts pump development. The third generation Sintered NdFeB magnet with (BH)max 207 kJ/m³ to 422 kJ/m³ is an ideal material for magnetic drive pump. Sintered NdfeB magnet is the strongest magnet which can reduce the volume of pump and its material Fe and Nd is rich than samarium, so price is affordable. It helps magnetic drive pump get the market finally.
China Magnets Source Material Limited is able to manufacture different kinds of high performance magnets for magnetic drive pumps. You are welcome to contact us for more information. Our engineers also are ready to provide technical assistance.
High quality permanent magnet for your electric drive control system and daily life. Any question, please contact sales@china-magnets-source-material.com www.china-magnets-source-material.com www.sourcemagnets.com
2015年7月19日星期日
2014年10月10日星期五
Permanent Magnet for Motor
China-Magnets-Source-Material.com | Best Magnetic Solution
Permanent magnet for motor is one of important and high-end applications. In order to achieve optimal performance of PM motor, motor designers need to continually change their design and find best material for motor. Several factors will affect the choice of motor magnet.
1. Magnetic Material: Sintered NdFeB, Bonded NdFeB, Ferrite, SmCo, AlNiCo
- Sintered NdFeB magnet has high magnetic performance (including high magnetic flux, remanence, coercive force, resistance to magnetic demagnetization, and low temperature coefficient, loss of irreversible). It can improve motor performance and reduce the volume as well. It is main magnet material for PM motor.
- Bonded NdFeB magnet is well known for good plasticity. It suits for complex shape magnet or magnet with multipole magnetization direction. Usually, mould is needed for its production.
- Ferrite is an old magnet material which used on PM motor. It’s heavy weight but cheap price.
- SmCo can work under high working temperature. The magnetic force is weaker than Sintered NdFeB magnet, but also very powerful.
- AlNiCo with very high working temperature 450-550℃ is the oldest magnet material for motor and replace by ferrite later.
2. Magnet Max. Working Temperature: Sintered NdFeB magnet 150℃ (N35SH, N38SH, N42SH, N45SH), 180℃ (N35UH, N38UH, N40UH) , 200℃ (N35EH, N38EH); Sm2Co17 300℃
3. Magnet Working Environment: low weight loss (high corrosion resistance)
4. Magnet Coating: NiCuNi, Zn, Black epoxy, Grey epoxy etc. To make full use of magnet performance and control tolerance well, sometimes the plating of magnet uses phosphorization or passivated for temporary protection
5. Magnet Shape: segment (arc), wedge, bread, block, ring, or special shape
6. Magnetized direction: it depends on magnet design. In order to get best performance, magnetic declination can’t be ignored.
7. Magnet tolerance: a lot of motor magnets are made of segment magnets, and small tolerance is very important to reduce air gap and assemble a ring.
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| Segment NdFeB Magnet For Motor |
China Magnets Soure Material Limited is rich in experience of motor magnet manufacture, such as magnet for flat brushless motor, DC Motor, AC motor, stepper motor , servo motor, synchronous motor; magnet for mini motor or special motor; magnet for high temperature to high humidity; magnet for regular shape or irregular shape.
You are welcome to contact us for more information. Our engineers also are ready to provide technical assistance.
2014年8月25日星期一
How to choose a magnetic material? By china-magnets-source-material.com
When choose a magnet material, you need to
figure out the requirement you need magnet to do in your application, but not blindly pursue high performance magnetic material; and then get a comprehensive
understanding of different magnetic materials. If you have confusion on some
point, you can ask for technical help from magnet specialist or manufacturer.
Material
|
Magnetic Property
|
Working Temperature
|
Corrosion Resistance
|
Price
|
Remark
|
NdFeB Magnet
|
high
|
low
|
low
|
high
|
1
|
Ferrite / Ceramic
|
middle
|
middle
|
high
|
low
|
3
|
SmCo Magnet
|
high
|
high
|
high
|
high
|
2
|
AlNiCo Magnet
|
low
|
high
|
high
|
middle
|
4
|
Ferrite and ndfeb magnet can be processed by sintering or bonding method. The Sintered magnet has high magnetic force, but poor formation. The bonded magnet has good formation, but low property.
Alnico can be processed by casting and sintering, the cast alnico has high property, but poor formation. The bonded alnico has good formation, but low property.
This is a brief introduction for choosing
magnetic material, for more information, please visit our website www.china-magnets-source-material.com
2014年8月20日星期三
What is magnetic material? by china-magnets-source-material.com
Magnetic material is one of three fundamental
functional materials in the industry.
It was divided in two types based on
magnetic properties: soft magnet and hard magnet (also named permanent magnet).
Both are easy to get magnetized. The difference is: hard magnet can stay
magnetized for long time with high coercive force; soft magnet has low coercive
force, so lost its magnetic force easily.
Soft magnet: steel and iron, soft ferrite
and high iron amorphous materials
Hard magnet: Sintered Neodymium Magnet, BondedNeodymium Magnet, AlNiCo, Samarium Cobalt Magnet, Ferrite (due to rare earth
material content, they are also called rare earth magnets except ferrite)
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