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D4.4×1.0 Computer Sintered NdFeB Magnets Neodymium Iron Boron Magnet

Categories Sintered NdFeB Magnets
Brand Name: MGT
Model Number: MGT-Sintered NdFeB Magnet
Certification: ISO9001:2015
Place of Origin: Shandong, China
MOQ: 10PCS
Price: USD 0.01-20 /PC
Payment Terms: T/T
Supply Ability: 10 Million per day
Delivery Time: 15-25 days
Packaging Details: Iron Sheet Sheilding Packing, Wooden Carton, Customized Packing
Material: Sintered Neodymium Iron Boron, NdFeB Magnet,Rare Earth Permanent Magnetic Material
Type: Permanent Magnetic Material
Grade: N35-N54, M,H,SH,UH,ET,TH
Shape: Block, Cylinder, Ring, Arc, Thin Sheet, Disc, Complex Shape
Working Temp.: Max. 80 to 250℃
Coating: Nickel, Zinc, Epoxy, Gold, Silver, Aluminum, Parylene, Everlube, Paint, Phosphating
Color: Silver
Application: Automotive, Mobile, Computuer, Generator, Motor, Sensor, Washing Machine
Size: Custimized Size
Tolerance: ±0.02mm
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D4.4×1.0 Computer Sintered NdFeB Magnets Neodymium Iron Boron Magnet

D4.4×1.0 Computer Sintered NdFeB Magnets


Sintered NdFeB Magnets


Sintered NdFeB magnets are the most powerful magnets known. The maximum allowable temperature varies, but some grades are up to 240°C. This maximum temperature is important because the price of magnets increases with temperature.


Magnets consist of powder compacted in a magnetic field, so they have process fixed and limited magnetization directions. Usually the magnetic field lines must be parallel.


However, due to the low corrosion resistance of the material, corrosion protection of sintered neodymium magnets is always recommended. Corrosion resistance comparable to untreated pure iron. There are a range of different coatings(Nickel,Zinc,Epoxy, Parylene, Everlube,etc.) to choose from, but sometimes it is best to be completely encapsulated in stainless steel.


Magnetic Process


Magnetic Parameters


QINGDAO MAGNET MAGNETIC MATERIAL CO.,LTD.
Sintered NdFeB Magnet
Performance Parameter
GradeBr(20℃)CoercivityBH(max)(20℃)Temperature CoefficientDensityMax.Working Temp.
BrHcjHcbBH(max)
MGOe
T1-T2TK(Br)
Reference
TK(Hcj)
Reference
ρ
Reference
Tmax
Reference
TKGskA/mkOekA/mkOekJ/m³MGOe%/℃%/℃g/cm³
N351.18-1.2411.8-12.4≥955≥12≥860≥10.8263-29533-3720-80-0.105-0.757.4580176
N381.23-1.2812.3-12.8≥955≥12≥899≥11.3287-31036-397.4580176
N401.26-1.3112.6-13.1≥955≥12≥915≥11.5302-32638-417.4580176
N421.29-1.3412.9-13.4≥955≥12≥915≥11.5318-35040-447.5080176
N451.33-1.3813.3-13.8≥955≥12≥915≥11.5342-36643-467.5080176
N481.37-1.4113.7-14.1≥955≥12≥915≥11.5358-38245-487.5580176
N501.39-1.4313.9-14.3≥955≥12≥915≥11.5374-39847-507.5580176
N521.42-1.4714.2-14.7≥955≥12≥915≥11.5390-41449-527.6080176
N541.45-1.5014.5-14.0≥876≥11≥836≥10.5406-43051-547.6080176
35M1.18-1.2411.8-12.4≥1114≥14≥868≥10.9263-29533-3720-100-0.105-0.707.45100212
38M1.23-1.2812.3-12.8≥1114≥14≥907≥11.4287-31036-397.45100212
40M1.26-1.3112.6-13.1≥1114≥14≥931≥11.7302-32638-417.50100212
42M1.29-1.3412.9-13.4≥1114≥14≥955≥12.0318-35040-447.50100212
45M1.33-1.3813.3-13.8≥1114≥14≥987≥12.4342-36643-467.55100212
48M1.37-1.4113.7-14.1≥1114≥14≥1019≥12.8358-38245-487.55100212
50M1.39-1.4313.9-14.3≥1114≥14≥1035≥13.0374-39847-507.60100212
52M1.42-1.4714.2-14.7≥1114≥14≥1059≥13.3390-41449-527.60100212
54M*1.45-1.5014.5-14.0≥1114≥14≥1075≥13.5406-43051-547.60100212
35H1.18-1.2411.8-12.4≥1353≥17≥876≥11.0263-29533-3720-120-0.105-0.607.45120248
38H1.23-1.2812.3-12.8≥1353≥17≥915≥11.5287-31036-397.45120248
40H1.26-1.3112.6-13.1≥1353≥17≥939≥11.8302-32638-417.50120248
42H1.29-1.3412.9-13.4≥1353≥17≥963≥12.1318-35040-447.50120248
45H1.33-1.3813.3-13.8≥1353≥17≥995≥12.5342-36643-467.55120248
48H1.37-1.4113.7-14.1≥1274≥16≥1027≥12.9358-38245-487.55120248
50H1.39-1.4313.9-14.3≥1274≥16≥1043≥13.1374-39847-507.60120248
52H*1.42-1.4714.2-14.7≥1274≥16≥1067≥13.4390-41449-527.60120248
35SH1.18-1.2411.8-12.4≥1592≥20≥884≥11.1263-29533-3720-150-0.105-0.557.50150302
38SH1.23-1.2812.3-12.8≥1592≥20≥923≥11.6287-31036-397.50150302
40SH1.26-1.3112.6-13.1≥1592≥20≥947≥11.9302-32638-417.55150302
42SH1.29-1.3412.9-13.4≥1592≥20≥971≥12.0318-35040-447.55150302
45SH1.33-1.3813.3-13.8≥1592≥20≥1003≥12.6342-36643-467.60150302
48SH1.37-1.4113.7-14.1≥1592≥20≥1035≥13.0358-38245-487.60150302
50SH1.39-1.4313.9-14.3≥1592≥20≥1051≥13.2374-39847-507.60150302
52SH*1.42-1.4714.2-14.7≥1592≥20≥1075≥13.3390-41449-527.60150302
30UH1.08-1.1510.8-11.5≥1990≥25≥812≥10.2223-25528-3220-180-0.115-0.457.55180356
33UH1.14-1.1911.4-11.9≥1990≥25≥860≥10.8247-27131-347.55180356
35UH1.18-1.2411.8-12.4≥1990≥25≥892≥11.2263-29533-377.55180356
38UH1.23-1.2812.3-12.8≥1990≥25≥931≥11.7287-31036-397.60180356
40UH1.26-1.3112.6-13.1≥1990≥25≥955≥12.0302-32638-417.60180356
42UH1.29-1.3412.9-13.4≥1990≥25≥979≥12.3318-35040-447.60180356
45UH1.33-1.3813.3-13.8≥1990≥25≥1011≥12.7342-36643-467.60180356
48UH*1.36-1.4013.6-14.0≥1990≥25≥1035≥13.0358-38245-487.60180356
50UH*1.38-1.4213.8-14.2≥1990≥25≥1051≥13.2374-39847-507.60180356
30EH1.08-1.1510.8-11.5≥2388≥30≥820≥10.3223-25528-3220-200-0.115-0.457.55200392
33EH1.14-1.1911.4-11.9≥2388≥30≥868≥10.9247-27131-347.55200392
35EH1.18-1.2411.8-12.4≥2388≥30≥899≥11.3263-29533-377.6200392
38EH1.22-1.2612.2-12.6≥2388≥30≥931≥11.7287-31036-397.6200392
40EH1.25-1.2912.6-13.1≥2388≥30≥955≥12.0302-32638-417.65200392
42EH*1.28-1.3212.8-13.2≥2388≥30≥979≥12.3318-35040-447.65200392
45EH*1.32-1.3713.2-13.7≥2388≥30≥1011≥12.7342-36643-467.65200392
48EH*1.36-1.4013.6-14.0≥2388≥30≥1035≥13.0358-38245-487.65200392
30TH1.08-1.1510.8-11.5≥2786≥35≥820≥10.3223-25528-3220-250-0.115-0.407.6250482
33TH1.14-1.1911.4-11.9≥2786≥35≥868≥10.9247-27131-347.6250482
35EH1.18-1.2411.8-12.4≥2786≥35≥899≥11.3263-29533-377.65250482
38EH1.22-1.2612.2-12.6≥2786≥35≥931≥11.7287-31036-397.65250482
40EH*1.25-1.2912.6-13.1≥2786≥35≥955≥12.0302-32638-417.65250482
Note: Grades with *marked apply special processes.

The advantages of sintered neodymium magnets are:


The highest magnet strength available
High resistance to demagnetization
Operating temperature up to 240°C
Good at low temperature resistance. (down to – 100°C)
Possibility of more coils
Reduce waste - especially with complex geometries


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.


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