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RoHs Customized Bonded Neodymium Iron Boron Magnets D21.3*D18.5*T2.5mm

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Qingdao Magnet Magnetic Material Co., Ltd.

RoHs Customized Bonded Neodymium Iron Boron Magnets D21.3*D18.5*T2.5mm

Country/Region china
City & Province qingdao
Categories Magnetic Materials
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Product Details

D21.3-02 RoHs Customized Bonded Neodymium-Iron Boron Magnets

 

Bonded NdFeB magnets

 

Bonded Neodymium magnets are made of strong Nd-Fe-B material mixed into an epoxy binder. The mixture is approximately 97 vol% magnet material and 3 vol% epoxy resin. The manufacturing process involves mixing Nd-Fe-B powder with an epoxy binder, then compressing the mixture in a press and curing the part in an oven. Because the material is formed by crimping, dimensions typically vary by 0.002 inches or better for a given run.

 

Bonded Neodymium Iron Boron (NdFeB) magnets are strong magnets for a variety of applications. Epoxy coating is mostly used to bond NdFeB magnets; electroless nickel plating is also used to prevent corrosion. Isotropically bonded NdFeB materials can be magnetized in any direction or multi-pole.

 

The bonded Nd-Fe-B material is isotropic and thus can be magnetized in any direction, including multipolar arrangements. Since the material has an epoxy adhesive, it can be machined on a milling machine or lathe. However, the material does not support threads and therefore cannot be tapped. Bonded Nd-Fe-B materials are often used to drastically reduce the size of designs using ceramic magnet materials. Since the material is about three times stronger than ceramic magnet materials, it can be significantly reduced in size. Furthermore, since the material is isotropic, it can be magnetized with multiple poles, such as an N-S-N-S pattern on the outer diameter of the ring.

 

Production List
Series080610-8120813091309A141215071509151016101609D
magnetic Powder
VSM
Br7.00~7.207.60~7.758.10~8.308.40~8.558.5-8.78.45-8.659.2-9.458.85-9.18.85-9.19.05-9.28.85-9.2
kGs
Hcj5.00~7.507.80~8.808.00~8.809.00~9.809-9.812-12.76.8-7.89.2-9.810-10.89.3-10.19.2-9.8
kOe
Hcb4.30-5.005.20~5.605.80~6.306.20~6.806.2-6.86.7-7.25.5-66.4-6.96.4-6.96.7-7.26.7-7.2
kOe
(BH)max8.80-9.3011.70~12.1013.00~13.8014.20~14.8014.2-15.114.4-15.215-1615.5-16.315.5-16.316.5-17.516.5-17.5
MGOe
magnet
D10样柱
Br5.50~5.906.00~6.156.35~6.506.60~6.806.6-6.96.7-6.87.3-7.56.9-76.9-77.05-7.157.05-7.15
kGs
Hcj5.00~7.507.80~8.808.00~8.809.00~9.809-9.812-12.76.8-7.89.2-9.810-10.89.3-10.19.2-9.8
kOe
Hcb3.80~4.404.80~5.105.10~5.405.40~5.805.4-5.85.7-5.95.3-5.55.7-65.7-65.7-6.25.8-6.2
kOe
(BH)max6.00~6.407.40~7.708.30~8.708.90~9.309-9.49.6-9.810.3-10.59.9-10.39.9-10.310.2-10.610.2-10.6
MGOe

 

Magnetic Perfomance Parameter

Isotropic Compression Bonded NdFeBRemanenceIntrinsic CoercivityCoercivityMaximum Magnetic
Energy Product
Working
Temp.
Advantages
BrHcjHcbBH(max)Temp1,Various shapes(ring,arc segment,strange shaped);
2,Various magnetic orientation, low eddy loss;
3,Rotate stably,low noise,save electricity.
kGsmTkOekA/mkOekA/mMGOekJ/m3
5.5-7.6550-7606-15470-12003.5-6.5278-5205-11.540-9280 ~ 150
 
Anisotropic
Compression Bonded NdFeB
RemanenceIntrinsic CoercivityCoercivityMaximum Magnetic
Energy Product
Working
Temp.
Advantages
BrHcjHcbBH(max)Temp1,Higer magnetic energy, compares to Isotropic compression bonded NdFeB;
2,Process to ring, low eddy loss;
3,Rotate stably at high RPM, low noise.
kGsmTkOekA/mkOekA/mMGOekJ/m3
8.5-10.6850-106012-17950-13506.7-8.2530-65013-21102-17080 ~ 150

 

 

Production processes of compression bonded NdFeB magnet:

 

Isotropic Material

 

Magnetic powder&Couple Agent→Binding→Materials→Pressing/Forming

(Magnetic filed free)→Curing→Surface Treatment→Magnetizing→Inspection→Packing→Delivery

 

 

Anisotropic Material

 

Magnetic powder&Couple Agent→Binding→Materials→Pressing/Forming

(With Magnetic filed)→Demagnetizing→Curing→Surface Treatment→Magnetizing→Inspection→Packing→Delivery

 

 

Maximum operating temperature

 

Although the Curie temperature of NdFeB materials is around 310 ºC for 0% cobalt and higher than 370 ºC for 5% cobalt, some irreversible output loss may occur even at moderate temperatures. The new magnets also have a moderately high reversible temperature coefficient of induction, with the total magnetic output decreasing with increasing temperature. The choice of neodymium magnets over SmCo is a function of the maximum temperature of the application, the desired magnetic output at typical operating temperatures, and the total system cost.

 

The new magnet also has some limitations due to its corrosive behavior. In wet environments, a protective coating or electroplating is strongly recommended. Coatings that have been successfully applied include: electronic coatings, powder coatings, nickel plating, zinc plating, parylene, and combinations of these coatings.

 

Features

 

1.Max. Working temp.160℃;

2.Molding processed, economical and full automated manufacturing;

3. Reliable corrosion resistance, various coatings (Epoxy, parylene, Everlube, paint, etc.) ensure corrosion resistance and product appearance;

4. Magnetized methods variously, multipole axially, radially with skew angle, Halbach Array. Make motors performances more efficient, less noise at high speed rotation.

 

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