ISO 9001 Certified NdFeB Production

Neodymium Disk Magnets

Custom NdFeB disk magnets with stable magnetic performance, precision machining, coating options and application-oriented support for industrial magnetic systems.

Neomettech Custom Neodymium Disk Magnet Services

We support customized NdFeB disk magnets and other shapes based on application requirements, magnetic circuit design, working temperature, coating environment, dimensional tolerance, and assembly structure.

Magnet grade icon

Grade

From N35 to N52, including H, SH, UH and other high-temperature grades.

Shape customization

Shape

Round discs, thin discs, thick discs, chamfered edges, countersunk discs, stepped discs, and customized diameter or thickness designs.

Tolerance control icon

Size & Tolerance

Custom dimensions with precision machining and tolerance control support.

Coating service icon

Coating

Ni-Cu-Ni, epoxy, zinc and other coating options for different environments.

Magnetization direction icon

Magnetization

Axial magnetization is the most common option, with N/S poles on the two flat circular faces. Diametrical, radial, and multi-pole magnetization can also be customized.

Need Custom Disk Magnets?

Send your drawing or application requirements for custom NdFeB disk magnet solutions.

NdFeB magnet manufacturing
Magnet production workshop
Industrial magnet inspection

Why Global Buyers Choose Neomet Tech?

We support global industrial buyers with custom sintered NdFeB magnets from sample development to massproduction, combining in-house manufacturing capability, gualified supply resources, and application-orientedtechnical communication.

01

Stable Production Capacity

Our own and qualified partner manufacturing facilities each offer over 3,000 tons of annual sintered NdFeB production capacity, supporting stable lead times, scalable production planning, and long-term supply reliability.

02

Proven Manufacturing Experience

With over ten years of projectand manufacturing experience,we support customers incontrolling key production factors such as machiningtolerance, magneticpertormance consistency,coating reliability and process inspection.

03

Long-Term Industrial Cooperation

Our magnets are widely used in industrial applications where stable quality,clear communication, and reliable project follow-up are important for both development and mass production projects.

Why Use Neodymium Disk Magnets?

Neodymium disk magnets are widely used when strong magnetic force is required in a thin, flat, and compact circular shape. Compared with ferrite or AlNiCo disk magnets, sintered NdFeB disk magnets provide much higher magnetic performance, making them suitable for applications where limited space, stable holding force, and easy surface mounting are important.

The flat round geometry of disk magnets allows easy integration into housings, fixtures, sensors, magnetic closures, packaging, electronics, holding systems, and custom magnetic assemblies. Their simple shape makes them suitable for both surface mounting and embedded installation.

Depending on the application requirements, neodymium disk magnets can be customized by diameter, thickness, grade, coating, tolerance, chamfer, and magnetization direction. Most disk magnets are axially magnetized, with the north and south poles located on the two flat circular faces. ( View NdFeB Magnet Grade Data )

Thanks to their compact size, strong holding force, and easy assembly, neodymium disk magnets are commonly used in magnetic closures, sensors, holders, electronics, packaging, fixtures, and precision magnetic components.

Key features of neodymium disk magnets include:

  • Thin and compact round shape for space-saving assembly
  • Strong holding force in a small disk-shaped magnet
  • Custom diameter, thickness, coating, tolerance, and chamfer
  • Common axial magnetization with poles on the two flat circular faces
  • Suitable for magnetic closures, sensors, holders, electronics, packaging, fixtures, and custom magnetic assemblies

Our Coatings Options

Optional Coatings for Neodymium Disk Magnets

Neodymium disk magnets are usually supplied with protective coatings to prevent oxidation, corrosion, and surface damage during handling, assembly, and long-term use. Common coating options for sintered NdFeB disk magnets include Ni-Cu-Ni, Zinc, Epoxy, and other customized surface treatments. The suitable coating can be selected based on the working environment, humidity level, bonding method, appearance requirement, and corrosion resistance needs.

Custom Stepped Disk Magnets

Ni-Cu-Ni

A widely used coating for sintered NdFeB magnets, offering a bright metallic appearance, good dimensional stability, and general corrosion protection for indoor and standard industrial applications.

Zinc

A cost-effective coating option for general-purpose applications where basic corrosion protection and simple surface appearance are required. Suitable for controlled indoor or mild working environments.

Epoxy Coated Disk neodymium Magnet

Epoxy

Suitable for applications requiring improved corrosion protection, especially in humid or chemically challenging environments. Epoxy provides good surface coverage and environmental resistance, but should be evaluated according to wear, impact, and assembly conditions.

Coating Type Thickness Appearance PCT Salt Spray Humidity Acid / Alkali Oil Typical Notes
White Zinc
Zn
≥5 μm Blue-white ★★ ★★★ Basic protection
Color Zinc
Zn
≥5 μm Color-plated red ★★★ ★★★★ Improved corrosion resistance
Ni-Cu-Ni ≥15 μm Silver-white ★★★ ★★★★ ★★★★★ ★★★ ★★★ Common industrial coating
Ni-Cu-Ni-Sn ≥15 μm Silver-white ★★★★★ ★★★★ ★★★★★ Excellent solderability
Chemical Ni ≥5 μm Silver-white ★★★★ ★★★★★ ★★★★★ ★★★ ★★★ Good overall protection
Epoxy ≥12 μm Black or grey ★★★ ★★★★★ ★★★★★ ★★★★★ ★★★★ Good corrosion resistance; weaker wear resistance
Passivated ≤2 μm Black or grey ★★★ ★★★ Thin surface protection
Aluminum
Al
≥3 μm Silver-grey ★★★★★ ★★★ ★★★★ ★★★ High bonding strength
Al + Epoxy ≥15 μm Black or grey ★★★★★ ★★★★★ ★★★★★ ★★★★★ ★★★★★ Excellent corrosion resistance
Zn-Al ≥10 μm Silver-white or silver-grey ★★★★★ ★★★★★ ★★★★★ ★★★★★ Strong protection option
Everluber ≥5 μm Golden yellow ★★★★★ ★★★★★ ★★★★★ ★★★★★ ★★★★★ High-performance surface protection
Teflon ≥5 μm Black ★★ ★★★ ★★★★★ ★★★★★ ★★★ Good corrosion resistance
Parylene Coating ≥3 μm Transparent ★★ ★★★ ★★★★★ ★★★★★ ★★★ Biocompatible coating option

Note:The star rating reflects the relative corrosion resistance of each coating. Five stars indicate excellent resistance, while “—” means the coating is generally not suitable for that condition. For custom neodymium block magnets, coating selection should be based on humidity, salt spray exposure, chemical contact, assembly method and expected service life.

Our Shapes Options

Custom Disk Magnet Shapes & Machining Options

Neodymium disk magnets are widely used in applications that require strong magnetic force in a thin, flat, and compact circular shape. Typical applications include magnetic closures, sensors, reed switches, holders, packaging, electronics, fixtures, craft assemblies, and custom magnetic components. Their flat round design makes them easy to mount, embed, or bond onto different surfaces while maintaining strong and stable magnetic performance.

disk-neodymium-magnet

Disk Neodymium Magnet

thin disk neodymium nagnets

Thin Disk Magnets

Custom Stepped Disk Magnets

Stepped Disk Magnets

Countersunk Disc Neodymium Magnet

Countersunk Disc Magnet

Applications

Disk Magnet Typical Applications

Neodymium disk magnets are widely used in applications where strong magnetic force, compact structure, and a central mounting hole are required. Their through-hole design makes them easy to integrate with shafts, screws, housings, sensors, and rotating components, making them suitable for motors, magnetic couplings, speakers, holding systems, positioning devices, and custom magnetic assemblies.

Disc magnet Magnetization

Disc Magnet Magnetization

Disk Magnet Magnetization Direction and Custom Options

Most neodymium disk magnets are axially magnetized, with the north and south poles located on the two flat circular faces. This magnetization direction is suitable for holding, surface mounting, magnetic closures, sensors, and general assembly applications. Depending on the project requirements, disk magnets can also be customized by diameter, thickness, grade, coating, tolerance, chamfer, polarity marking, and special magnetization patterns where production feasibility allows.

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What Is the Relationship Between Magnet Grades and Cost?

Magnet grade has a direct impact on cost. When the performance grade or coercivity level increases, the material formulation and production process often become more demanding. Higher coercivity grades may require the addition of medium and heavy rare earth elements, as well as more advanced manufacturing processes such as grain boundary diffusion.

As a rough reference, when the performance grade increases by one level, for example from N35 to N38, the material cost may increase by around 5%–15%. When the coercivity level increases, such as from N52M to N52H or from N40SH to N40UH, the cost may increase by approximately 10%–15%.

However, the final price is not determined by grade alone. Coating requirements, magnet size, tolerance, magnetization direction, custom shape, order quantity, and inspection standards can also affect the total cost.

If you are not sure which grade is suitable for your project, please contact us with your application details. Our team can help recommend a suitable NdFeB grade based on working temperature, required magnetic force, coating environment, and cost target.

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How to Choose the Right NdFeB Magnet Grade?

In general sintered NdFeB grade naming, the number indicates the maximum energy product range, while the suffix letter indicates the intrinsic coercivity class. For Chinese standard grades, this classification is defined in GB/T 13560-2017.

When Selecting a Grade, Consider:
  • Required magnetic force or flux output
  • Available magnet size and air gap
  • Working temperature and reverse magnetic field
  • Coating, tolerance, and assembly conditions
  • Cost-performance balance for mass production
NdFeB magnet grade N35H explanation

For example, in the grade N35H :

“N” indicates that the magnet is made from NdFeB material, also known as neodymium iron boron.

“35” represents the performance grade and refers to the maximum energy product (BHmax). The higher the number, the higher the BHmax value, and the stronger the magnet can be at the same size.

“H” indicates the intrinsic coercivity class. Compared with standard N grade, H-grade materials offer higher Hcj, helping reduce irreversible demagnetization risk under elevated temperature or reverse magnetic field.

Intrinsic Coercivity Class Guide
N
Normal
M
Medium
H
High
SH
Super High
UH
Ultra High
EH
Extra High
AH
Advanced High

Manufacturing Process of Sintered NdFeB Magnets

Sintered NdFeB magnets require a controlled manufacturing process from raw material batching to final inspection. Each step affects magnetic performance, dimensional accuracy, coating reliability, and long-term stability in industrial applications.

01

Raw Materials Batching

Rare earth elements, iron, boron, and alloying elements are prepared according to the required magnet grade and performance target.

02

Alloy Melting

The raw materials are melted and cast into alloy flakes to form the base material for sintered NdFeB magnet production.

03

Powder Preparation

The alloy is processed into fine powder under controlled conditions to support stable magnetic properties and sintering performance.

04

Magnetic Field Alignment & Pressing

The powder is aligned in a magnetic field and pressed into green compacts, forming the basic shape and magnetic orientation.

05

Vacuum Sintering

The pressed compacts are sintered under vacuum to achieve high density, strong magnetic performance, and stable material structure.

06

Magnetic Property Testing

Key magnetic properties such as Br, Hcj, Hcb, and BHmax are tested to confirm that the material meets the required grade.

07

Precision Machining

Blocks are cut, ground, or shaped to meet customer drawings, dimensional tolerances, and assembly requirements.

08

Surface Protection

Coatings such as Ni-Cu-Ni, zinc, epoxy, or other protective layers are applied to improve corrosion resistance.

09

Magnetization

Magnets are magnetized according to the required direction, pole orientation, or custom magnetic circuit design.

10

Final Inspection

Dimensions, coating quality, magnetic direction, surface field, flux, and appearance can be checked based on project requirements.

11

Packaging

Magnets are packed with suitable magnetic shielding, separation materials, and export-ready packaging for safe transportation.