• Super Neodymium Magnet NiCuNi Coating Sintered Disc Shaped Magnets
  • Super Neodymium Magnet NiCuNi Coating Sintered Disc Shaped Magnets
Super Neodymium Magnet NiCuNi Coating Sintered Disc Shaped Magnets

Super Neodymium Magnet NiCuNi Coating Sintered Disc Shaped Magnets

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: 500PCS
Price: Negotiation
Packaging Details: Standard Package
Delivery Time: 15-30 working days after received your payment
Payment Terms: T/T
Supply Ability: 1000k pcs/month
Get Best Price Contact Now

Detail Information

Name: Super Neodymium Magnet Grade: N35-N52 (M.H.SH.UH.EH.AH)
Coating: NiCuNi, Zn, Cr, Gold, Silver, Epoxy, Phosphating Application: Industrial Magnet, Etc
Size: Customized According To Customer Requirements Max Operating Temperature: 80-220℃(176-428℉)
Processing: Sintered Packing: Foam Board+carton Box Or Customized
Highlight:

Super Neodymium Magnet

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Neodymium Disc Shaped Magnets

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Sintered Disc Shaped Magnets

Product Description

Super Neodymium Magnet N35-N52 Custom Round Disc NdFeB Magnets

 

There are many levels of NdFeB magnets

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℉)    

Which coating is the best for your magnet?

NiCuNi coating: The nickel coating is composed of three layers, nickel-copper-nickel. This type of coating

is the most widely used and provides protection against corrosion of the magnet in outdoor situations.

Processing costs are low. The maximum working temperature is approximately 220-240ºC (depending on

the maximum working temperature of the magnet). This type of coating is used in engines, generators,

medical devices, sensors, automotive applications, retention, thin film deposition processes and pumps.

 

Black nickel: The properties of this coating are similar to those of the nickel coating, with the difference

that an additional process is generated, the black nickel assembly.

 

Zinc: If the maximum working temperature is less than 120°C, this type of coating is adequate. The costs

are lower and the magnet is protected against corrosion in the open air. It can be glued to steel, although

a specially developed adhesive must be used. The zinc coating is suitable provided that the protective

barriers for the magnet are low and low working temperatures prevail.

 

Epoxy: A coating that provides an excellent barrier against salt and water. There is a very good adhesion

to steel, if the magnet is glued with a special adhesive suitable for magnets. The maximum working

temperature is approximately 150 ° C. Applications can be found in the maritime sector, engines, sensors,

consumer goods and the automotive sector.

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