• Arc NdFeB High Power Permanent Magnets Neodymium Magnets In Wind Turbines
  • Arc NdFeB High Power Permanent Magnets Neodymium Magnets In Wind Turbines
Arc NdFeB High Power Permanent Magnets Neodymium Magnets In Wind Turbines

Arc NdFeB High Power Permanent Magnets Neodymium Magnets In Wind Turbines

Product Details:

Place of Origin: China
Brand Name: Monte Bianco
Certification: ISO9001, ISO14001, TS16949
Model Number: N35-N52 (M.H.SH.UH.EH.AH)

Payment & Shipping Terms:

Minimum Order Quantity: 500 piece
Price: Negotiatial
Packaging Details: Standard Package
Delivery Time: 15-30 working days after received your payment
Payment Terms: T/T
Supply Ability: 500k pcs/month
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Detail Information

Product Name: High Power Permanent Magnets Grade: N35-N52 (M.H.SH.UH.EH.AH)
Coating: Ni, Zn, Cr, Gold, Silver, Epoxy, Phosphating Size: Customized Magnet Size
Material: Permanent Neodymium Magnet Application: Industrial Magnet
Processing: Sintered Motor Magnet Permanent,Sintered Packing: Foam Board+carton Box Or Customized
High Light:

NdFeB High Power Permanent Magnets

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Permanent Magnets Neodymium Magnets

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Neodymium Magnets In Wind Turbines

Product Description

Arc NdFeB Magnet For Generators Wind Turbine Neodymium Permanent Magnets

 

Wind turbines can work in the wilderness and withstand the tests of high temperature and cold. At the same time, motor loss also leads to an increase in motor temperature. Sintered neodymium iron boron magnets can operate at 120 ° C.

 

The Curie temperature of neodymium iron boron permanent magnet alloy is about 310 ℃. When the temperature of the magnet exceeds the Curie point, it will change from ferromagnetism to paramagnetism. At the Curie temperature, the remanence of neodymium iron boron decreases with increasing temperature, and its remanence temperature coefficient (Br) is -0.095-0.105%/. The coercive force of Nd-Fe-B decreases with increasing temperature, and the temperature coefficient of coercive force β (jHc) is -0.54-0.64%. If an appropriate coercive force is selected, the magnet will still have a sufficiently high coercive force at the highest operating temperature designed for the motor; Otherwise, it will lose motivation.

 

Max Operating Temperature

 

grade Max Operating Temperature grade Max Operating Temperature
N30-N54 80℃(176℉) N30UH-N45UH 180℃(356℉)
N30M-N52M 100℃(212℉) N30EH-N38EH 200℃(392℉)
N30H-N52H 120℃(248℉) N32AH 220℃(428℉)
N30SH-N45SH 150℃(302℉)    

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