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Stock Code:603072
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NdFeB

Tianhe Magnetics neodymium-iron-boron (NdFeB) permanent magnets are primarily composed of three elements: neodymium, iron, and boron. As the third generation of rare earth permanent magnets, they offer the highest magnetic performance currently available. They are characterized by high remanence, strong coercivity, and an excellent magnetic energy product.

Product Introduction

Tianhe Magnetics neodymium-iron-boron (NdFeB) permanent magnets are primarily composed of three elements: neodymium, iron, and boron. As the third generation of rare earth permanent magnets, they offer the highest magnetic performance currently available. They are characterized by high remanence, strong coercivity, and an excellent magnetic energy product.

Production Process

  • 01
    Raw Materials
  • 02
    Melting
  • 03
    Hydrogen Decrepitation
  • 04
    Jet Milling
  • 05
    Pressing
  • 06
    Sintering
  • 07
    Testing
  • 08
    Machining
  • 09
    Grain Boundary Diffusion (Optional)
  • 10
    Surface Treatment
  • 11
    Magnetization
  • 12
    Inspection & Shipping

Magnetic Properties Table

  • Magnetic Properties Table
  • Physical Properties
  • Parameters and Conversion Table

Item

Parameters

Reference Value

Additional magnetic properties

Temp.Coefft.of Br [(dBr/Br)]/(%/K)
-0.08~-0.12

Temp.Coefft.of Hcj [(dHcj/Hcj)]/(%/K)
-0.42~-0.70

Curie Temperature (Tc)/℃
310-380

Recoil Permeability (μrec)(-)
1.05

Density (g/cm³)
7.45-7.7

Mechanical and Physical Properties

Vickers Hardness/(Hv)
650

Electrical Resistivity/(μΩ·m)
1.4

Compressive Strength/MPa
1050

Tensile Strength/MPa
80

Bending Strength/MPa
290

Thermal Conductivity/[W/(m·K)]
6-8

Young's Modulus/GPa
160

Coefficient of Thermal Expansion (C⊥) / (10-6/K)
-1.5

Coefficient of Thermal Expansion (C∥) / (10-6/K)
6.5

Demagnetization Curve

N35AH
N35AH
N42EH
N42EH
N45UH
N45UH
N48EH
N48EH
N52H
N52H
N52UH
N52UH
N54M
N54M
N54SH
N54SH
N54SH
N54SH

Surface Treatment

The neodymium iron boron (NdFeB) matrix is prone to corrosion. To overcome this flaw, surface protection treatment is required. Common methods include: phosphating, blue/white zinc, color zinc, nickel-copper-nickel, copper-nickel, zinc-nickel alloy, electrophoretic epoxy, sprayed epoxy, and nickel-copper + epoxy, among others.
Temporary Protection
Inorganic Coating
Organic Coating
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