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Strong N52 Neodymium Magnets Nd2Fe14B Artificial Permanent Magnet

    Buy cheap Strong N52 Neodymium Magnets Nd2Fe14B Artificial Permanent Magnet from wholesalers
     
    Buy cheap Strong N52 Neodymium Magnets Nd2Fe14B Artificial Permanent Magnet from wholesalers
    • Buy cheap Strong N52 Neodymium Magnets Nd2Fe14B Artificial Permanent Magnet from wholesalers
    • Buy cheap Strong N52 Neodymium Magnets Nd2Fe14B Artificial Permanent Magnet from wholesalers
    • Buy cheap Strong N52 Neodymium Magnets Nd2Fe14B Artificial Permanent Magnet from wholesalers
    • Buy cheap Strong N52 Neodymium Magnets Nd2Fe14B Artificial Permanent Magnet from wholesalers
    • Buy cheap Strong N52 Neodymium Magnets Nd2Fe14B Artificial Permanent Magnet from wholesalers
    • Buy cheap Strong N52 Neodymium Magnets Nd2Fe14B Artificial Permanent Magnet from wholesalers

    Strong N52 Neodymium Magnets Nd2Fe14B Artificial Permanent Magnet

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    Brand Name : MGT
    Model Number : MGT-Sintered NdFeB Magnet
    Certification : ISO9001:2015
    Price : USD 0.01-20 /PC
    Payment Terms : T/T
    Supply Ability : 10 Million per day
    Delivery Time : 15-25 days
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    Strong N52 Neodymium Magnets Nd2Fe14B Artificial Permanent Magnet

    13.88×9.88×0.75 ±0.1mm Sintered NdFeB Magnet


    NdFeB magnets


    Neodymium magnets can be called NdFeB magnets, which is a general term for strong magnets. The chemical formula is Nd2Fe14B, and it is one of the artificial permanent magnet materials with the strongest magnetic force so far. The material grade of NdFeB magnets is N35-N52, which can be processed into different shapes according to specific requirements, such as round, square, punching, magnetic tile, magnetic rod, convex or trapezoidal, etc.


    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.

    Production process of sintered NdFeB magnets


    Sintered NdFeB magnets are anisotropic magnets produced by powder sintering. Generally, only blanks can be produced by sintering, and magnets of various shapes need to be mechanically processed (such as wire cutting, slicing, grinding, etc.). Sintered NdFeB is a hard and brittle material that is difficult to process, so it has large processing loss, high cost, poor dimensional accuracy, poor corrosion resistance, and the surface needs electroplating, but the advantage is high performance, which has reached more than 50M at present.


    The main advantages of neodymium magnet material


    • Very high strength.
    • Relatively low cost: about 20 times more than ferrite magnets by weight, and about 1.5 times more than ferrite magnets on a per BHmax basis.
    • Relatively easy to process compared to Alnico and SmCo magnets.

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