Ningbo Beyond Magnet Co., Ltd
+86 18967864428 / +86-17706613572

Permanent magnet, NdFeB magnet, Rare earth magnet, Pot magnet, Rubber magnet and more……

We are not only supply customized magnets and magnetic assembly as per particular requirements, but also would love to get involved in design and technical support through whole project lifetime, we are the reliable magnetic solutions partner.

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      • 1. The plating of sintered NdFeB magnets.
      • 2. Introduction of rare earth elements
      • 3. Why powder size and oxygen content have to be controlled
      • 4. What is LD ratio
      • 5. Advantages of NdFeB magnet
      • 6. How long the magnetism of NdFeB can last
      • 7. How to detect the quality of coatings
      • 8. How to shield the magnetic
      • 9. Introduction of sintering Nd-Fe-B related parameters
      • 10. Magnetic materials category
      • 11. Magnetic Parameter Conversion table
      • 12. Magnetic performance comparison chart of various permanent magnets
      • 13. Mainly consider the following to select sintered NdFeB magnets
      • 14. Product Notes
      • 15. Product Selection
      • 16. Production process of NdFeB magnet
      • 17. The density of the NdFeB magnet materials in different grades
      • 18. The difference in the surface gauss testing
      • 19. What are the advantages of radial orientation ring magnets
      • 20. What is BH Curve
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      • 21. What is HD strip
      • 22. What is the temperature coefficient
      • 23. What main factors will influence the magnet property
      • 24. What should be noticed for the storage and transportation of magnet products
      • 25. What\'s curie temperature
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16. Production process of NdFeB magnet
Sintered NdFeB magnets are relatively inferior on corrosion resistance comparing with the traditional magnets such as Sm-Co, Alnico and ferrite. For general applications, sintered NdFeB magnets may need to be coated or surface treated depending on their intended uses. Coating treatment for the sintered NdFeB magnets not only improves their corrosion resistance, but also appearance, wear resistance as well as appropriate for applications in clean room conditions.

There are various coatings suitable for the sintered NdFeB magnets, ranging from plating coating layers such as Ni, Zn, Au and organic electro-deposition (epoxy for example), physical vacuum deposition (PVD) of Al, galvanic tin, chemical vapor deposition (CVD), or any combinations of these.

Besides of coating protection, the sintered NdFeB magnets can also be surface treated by chromatation, phosphatization, and other chemical passivation treatments to improve their corrosion resistance.

Not all types of coating or passivation treatment will be suitable for every magnet, and the final choice will depend on their applications and environment. For example, Ni coating has good corrosion resistance for a variety of atmospheres, but it shields part of the magnetic flux because nickel is a ferromagnetic material. Furthermore, the affinity of Ni coating glued to other metals is inferior to that of Zn coating. Comparing with Ni coating, Zn coating has advantages of good gluing ability, less magnetic flux shielding so that the magnet has good homogenous apparent flux features from piece to piece. But the corrosion resistance of Zn coating is inferior to Ni coating when the magnet is used in stronger corrosive environment. If the magnet is intended to be used in high humid and strong corrosive surroundings, it is suggested that the magnet be coated with multiple layers such as Ni+Cu+Ni, Ni+epoxy, Zn+epoxy et al. If the magnet is intended to be used in dry atmosphere and weak corrosive environment, Zn coating is recommended.
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Ningbo Beyond Magnet Co., Ltd
Luao Industrial Park, Hengjie town, Haishu District,, Ningbo, PC315181, CHINA 315181 Ningbo China
+86-574-56114004
+86 18967864428 / +86-17706613572
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