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NdFeB Neodymium magnets, often simply referred to as Neodymium magnets, represent the most powerful type of permanent magnets commercially available. Composed primarily of Neodymium (Nd), Iron (Fe), and Boron (B), these rare-earth magnets have revolutionized countless industries due to their exceptional magnetic strength and versatility. Their development in the early 1980s marked a significant leap in magnetic technology, enabling the miniaturization and enhanced performance of various devices across a broad spectrum of applications.
Neodymium magnets are intermetallic compounds, typically with a tetragonal crystal structure. The precise stoichiometry is often Nd2Fe14B, which gives them their characteristic magnetic properties. The manufacturing process for these powerful magnets typically involves several key stages:
The performance of NdFeB magnets is characterized by several key magnetic properties:
NdFeB magnets are available in various grades, such as N35, N42, N50, N52, etc. The “N” stands for Neodymium, and the number indicates the magnet’s maximum energy product in MGOe. For example, an N52 magnet has a maximum energy product of 52 MGOe, making it significantly stronger than an N35 magnet. Higher grades generally offer stronger magnetic fields but can also be more expensive and have different temperature characteristics. Specialty grades, like those with “M”, “H”, “SH”, “UH”, or “EH” suffixes, indicate higher operating temperatures and coercivity, making them suitable for applications requiring greater thermal stability.
The unparalleled strength of Neodymium magnets has led to their widespread adoption in a vast array of modern technologies:
Advantages:
Considerations:
NdFeB Neodymium magnets stand as a testament to advanced material science, driving innovation across nearly every sector of modern industry. Their unparalleled strength, coupled with continuous advancements in material composition and manufacturing processes, ensures their continued prominence in an ever-evolving technological landscape. As demand for more efficient, compact, and powerful devices grows, Neodymium magnets will undoubtedly remain at the forefront, enabling the next generation of high-performance products and solutions.
NdFeB (Neodymium-Iron-Boron) Magnets are the most powerful permanent magnets commercially available. Belonging to the Rare-Earth family, they offer an extreme magnetic energy product (BHmax), allowing engineers to achieve massive holding force or extreme magnetic separation gradients using incredibly small, lightweight magnet volumes.
They are the critical OEM component in manufacturing high-performance servomotors (for CNC and robotics), electric vehicle (EV) drive motors, wind turbine generators, aerospace sensors, medical MRI machines, and extreme-intensity magnetic separators used in the food and mining industries.
Neodymium is profoundly stronger. A high-grade Neodymium magnet (e.g., N52) can be up to 10 to 15 times stronger than a Ferrite magnet of the exact same size. This extreme power-to-weight ratio allows for the miniaturization of industrial motors and the capture of microscopic iron dust (nano-scale) in filtration systems.
Yes, temperature is their primary limitation. Standard grades (e.g., N35, N52) lose their magnetism permanently if exposed to temperatures above 80°C. However, for severe B2B industrial environments, we engineer High-Coercivity grades (such as EH, UH, or AH grades) that can withstand continuous operating temperatures up to 200°C or 230°C without degrading.
Because they contain a high percentage of Iron, raw Neodymium is highly susceptible to rapid oxidation (rusting) and will physically crumble if left exposed. To prevent this, our industrial B2B magnets are heavily electroplated with protective coatings, most commonly a triple-layer of Nickel-Copper-Nickel (Ni-Cu-Ni), or specialized Zinc, Epoxy, or Teflon coatings for harsh chemical resistance.
Yes, extreme caution is required. Large Neodymium blocks generate massive, invisible pulling forces. If two large blocks are allowed to snap together, they will crush fingers/bones instantly, and the brittle metal will shatter, sending sharp shrapnel into the air. Proper B2B safety protocols, non-magnetic jigs, and PPE are mandatory during assembly.
Absolutely. We are a direct B2B supplier for global OEMs. We manufacture custom Neodymium grades (from N35 to N54, plus high-temp grades), precision-machined into custom geometries (arcs, rings, blocks, countersunk discs) with strict dimensional tolerances and certified flux-density testing for your production lines.
| Remanence | Coercivity | Intrinsic Coercivity | Maximum Energy | Working Temperature | |
| Grade | Br (kG) | HcB (KOe) | Hci (KOe) | BHmax(MGOe) | Tmax |
| N33 | 11.17-11.14 | ≥10.5 | ≥12.0 | 31-33 | 80⁰C |
| N35 | 11.8-12.2 | ≥10.9 | ≥12.0 | 33-36 | 80⁰C |
| N38 | 12.2-12.6 | ≥11.3 | ≥12.0 | 36-39 | 80⁰C |
| N40 | 12.6-12.9 | ≥11.4 | ≥12.0 | 38-41 | 80⁰C |
| N42 | 12.9-13.3 | ≥11.5 | ≥12.0 | 40-43 | 80⁰C |
| N45 | 13.3-13.7 | ≥11.0 | ≥12.0 | 43-46 | 80⁰C |
| N48 | 13.7-14.1 | ≥10.5 | ≥11.0 | 45-49 | 80⁰C |
| N50 | 14.0-14.5 | ≥10.5 | ≥11.0 | 47-51 | 80⁰C |
| N52 | 14.3-14.8 | ≥10.5 | ≥11.0 | 49-53 | 80⁰C |
| N55 | 14.7-15.1 | ≥10.5 | ≥11.0 | 53-56 | 80⁰C |
| N35M | 11.8-12.2 | ≥10.9 | ≥14.0 | 34-36 | 100⁰C |
| N38M | 12.2-12.6 | ≥11.3 | ≥14.0 | 36-39 | 100⁰C |
| N40M | 12.6-12.9 | ≥11.6 | ≥14.0 | 38-41 | 100⁰C |
| N42M | 12.9-13.3 | ≥12.0 | ≥14.0 | 40-43 | 100⁰C |
| N45M | 13.3-13.7 | ≥12.5 | ≥14.0 | 43-46 | 100⁰C |
| N48M | 13.7-14.1 | ≥12.9 | ≥14.0 | 45-49 | 100⁰C |
| N50M | 14.0-14.5 | ≥13.0 | ≥14.0 | 47-51 | 100⁰C |
| N55M | 14.3-14.7 | ≥13.0 | ≥14.0 | 50-53 | 100⁰C |
| N30H | 10.8-11.3 | ≥10.0 | ≥17.0 | 28-31 | 120⁰C |
| N33H | 11.3-11.7 | ≥10.5 | ≥17.0 | 31-34 | 120⁰C |
| N35H | 11.8-12.2 | ≥10.9 | ≥17.0 | 33-36 | 120⁰C |
| N38H | 12.2-12.6 | ≥11.3 | ≥17.0 | 36-39 | 120⁰C |
| N40H | 12.6-12.8 | ≥11.6 | ≥17.0 | 38-41 | 120⁰C |
| N42H | 12.9-13.3 | ≥12.0 | ≥17.0 | 40-43 | 120⁰C |
| N45H | 13.3-13.7 | ≥12.3 | ≥17.0 | 43-46 | 120⁰C |
| N48H | 13.7-14.1 | ≥12.5 | ≥17.0 | 46-49 | 120⁰C |
| N50H | 14.0-14.3 | ≥13.3 | ≥17.0 | 47-50 | 120⁰C |
| N52H | 14.3-14.7 | ≥13.5 | ≥17.0 | 50-53 | 120⁰C |
| N30SH | 10.8-11.3 | ≥10.1 | ≥20.0 | 28-31 | 150⁰C |
| N33SH | 11.3-11.7 | ≥10.6 | ≥20.0 | 31-34 | 150⁰C |
| N35SH | 11.8-12.2 | ≥11.0 | ≥20.0 | 33-36 | 150⁰C |
| N38SH | 12.2-12.6 | ≥11.4 | ≥20.0 | 36-39 | 150⁰C |
| N40SH | 12.6-12.9 | ≥11.6 | ≥20.0 | 38-41 | 150⁰C |
| N42SH | 12.9-13.3 | ≥12.4 | ≥20.0 | 40-43 | 150⁰C |
| N45SH | 13.2-13.7 | ≥12.6 | ≥20.0 | 42-46 | 150⁰C |
| N48SH | 13.6-14.0 | ≥13.0 | ≥20.0 | 46-49 | 150⁰C |
| N50SH | 14.0-14.5 | ≥13.5 | ≥20.0 | 48-51 | 150⁰C |
| N28UH | 10.4-10.8 | ≥9.6 | ≥25.0 | 26-29 | 180⁰C |
| N30UH | 10.8-11.4 | ≥10.1 | ≥25.0 | 28-31 | 180⁰C |
| N33UH | 11.4-11.8 | ≥10.7 | ≥25.0 | 31-34 | 180⁰C |
| N35UH | 11.8-12.2 | ≥10.8 | ≥25.0 | 33-36 | 180⁰C |
| N38UH | 12.2-12.6 | ≥11.3 | ≥25.0 | 36-39 | 180⁰C |
| N40UH | 12.5-12.9 | ≥11.3 | ≥25.0 | 38-41 | 180⁰C |
| N42UH | 12.8-13.3 | ≥11.6 | ≥25.0 | 40-43 | 180⁰C |
| N45UH | 13.2-13.6 | ≥13.0 | ≥25.0 | 43-46 | 180⁰C |
| N28EH | 10.4-10.9 | ≥9.8 | ≥30.0 | 26-29 | 200⁰C |
| N30EH | 10.8-11.4 | ≥10.1 | ≥30.0 | 28-31 | 200⁰C |
| N33EH | 11.4-11.8 | ≥10.3 | ≥30.0 | 31-34 | 200⁰C |
| N35EH | 11.8-12.2 | ≥10.5 | ≥30.0 | 33-36 | 200⁰C |
| N38EH | 12.2-12.6 | ≥11.3 | ≥30.0 | 36-39 | 200⁰C |
| N40EH | 12.6-12.9 | ≥11.6 | ≥30.0 | 38-41 | 200⁰C |
| N28AH | 10.4-10.9 | ≥9.8 | ≥35.0 | 26-29 | 230⁰C |
| N30AH | 10.8-11.3 | ≥10.1 | ≥35.0 | 28-31 | 230⁰C |
| N33AH | 11.3-11.8 | ≥10.3 | ≥33.0 | 31-34 | 230⁰C |
| N35AH | 11.8-12.2 | ≥10.5 | ≥33.0 | 33-36 | 230⁰C |
| N38AH | 12.2-12.6 | ≥11.0 | ≥35.0 | 36-39 | 230⁰C |
NdFeB (Neodymium-Iron-Boron) Magnets are the most powerful permanent magnets commercially available. Belonging to the Rare-Earth family, they offer an extreme magnetic energy product (BHmax), allowing engineers to achieve massive holding force or extreme magnetic separation gradients using incredibly small, lightweight magnet volumes.
They are the critical OEM component in manufacturing high-performance servomotors (for CNC and robotics), electric vehicle (EV) drive motors, wind turbine generators, aerospace sensors, medical MRI machines, and extreme-intensity magnetic separators used in the food and mining industries.
Neodymium is profoundly stronger. A high-grade Neodymium magnet (e.g., N52) can be up to 10 to 15 times stronger than a Ferrite magnet of the exact same size. This extreme power-to-weight ratio allows for the miniaturization of industrial motors and the capture of microscopic iron dust (nano-scale) in filtration systems.
Yes, temperature is their primary limitation. Standard grades (e.g., N35, N52) lose their magnetism permanently if exposed to temperatures above 80°C. However, for severe B2B industrial environments, we engineer High-Coercivity grades (such as EH, UH, or AH grades) that can withstand continuous operating temperatures up to 200°C or 230°C without degrading.
Because they contain a high percentage of Iron, raw Neodymium is highly susceptible to rapid oxidation (rusting) and will physically crumble if left exposed. To prevent this, our industrial B2B magnets are heavily electroplated with protective coatings, most commonly a triple-layer of Nickel-Copper-Nickel (Ni-Cu-Ni), or specialized Zinc, Epoxy, or Teflon coatings for harsh chemical resistance.
Yes, extreme caution is required. Large Neodymium blocks generate massive, invisible pulling forces. If two large blocks are allowed to snap together, they will crush fingers/bones instantly, and the brittle metal will shatter, sending sharp shrapnel into the air. Proper B2B safety protocols, non-magnetic jigs, and PPE are mandatory during assembly.
Absolutely. We are a direct B2B supplier for global OEMs. We manufacture custom Neodymium grades (from N35 to N54, plus high-temp grades), precision-machined into custom geometries (arcs, rings, blocks, countersunk discs) with strict dimensional tolerances and certified flux-density testing for your production lines.
| Property | Symbol | Unit | Value |
| Density | ρ | g/cc | 7,5 |
| Vickers Hardness | Hv | D.P.N | 570,5 |
| Compressive Strength | C.S | N/mm2 | 780 |
| Coefficient of Thermal Expansion | C// | 10-6/°C | 7,8 |
| Electrical Resistivity, | r | µ Ω.cm | 150 |
| Temperature Coefficient of Resistivity | a | 10-4/°C | 2,8 |
| Electrical Conductivity | s | 106S/m | 0,667 |
| Thermal Conductivity | k | kCal/(m.h.°C) | 7,7 |
| Specific Heat Capacity | c | kCal/(kg.°C) | 0,12 |
| Tensile Strength | σUTS, or SU | kg/mm2 | 8 |
| Young’s Modulus | l / E | 1011N/m2 | 1,5 |
| Flexural Strength | b | 10-12m2/N | 9,8 |
| Compressibility | s | 10-12m2/N | 9,8 |
| Hardness | E.I | N/m2 | 0,64 |
| Poisson’s Ratio | n | 0,24 | |
| Curie Temperature | Tc | °C | 310 |
NdFeB (Neodymium-Iron-Boron) Magnets are the most powerful permanent magnets commercially available. Belonging to the Rare-Earth family, they offer an extreme magnetic energy product (BHmax), allowing engineers to achieve massive holding force or extreme magnetic separation gradients using incredibly small, lightweight magnet volumes.
They are the critical OEM component in manufacturing high-performance servomotors (for CNC and robotics), electric vehicle (EV) drive motors, wind turbine generators, aerospace sensors, medical MRI machines, and extreme-intensity magnetic separators used in the food and mining industries.
Neodymium is profoundly stronger. A high-grade Neodymium magnet (e.g., N52) can be up to 10 to 15 times stronger than a Ferrite magnet of the exact same size. This extreme power-to-weight ratio allows for the miniaturization of industrial motors and the capture of microscopic iron dust (nano-scale) in filtration systems.
Yes, temperature is their primary limitation. Standard grades (e.g., N35, N52) lose their magnetism permanently if exposed to temperatures above 80°C. However, for severe B2B industrial environments, we engineer High-Coercivity grades (such as EH, UH, or AH grades) that can withstand continuous operating temperatures up to 200°C or 230°C without degrading.
Because they contain a high percentage of Iron, raw Neodymium is highly susceptible to rapid oxidation (rusting) and will physically crumble if left exposed. To prevent this, our industrial B2B magnets are heavily electroplated with protective coatings, most commonly a triple-layer of Nickel-Copper-Nickel (Ni-Cu-Ni), or specialized Zinc, Epoxy, or Teflon coatings for harsh chemical resistance.
Yes, extreme caution is required. Large Neodymium blocks generate massive, invisible pulling forces. If two large blocks are allowed to snap together, they will crush fingers/bones instantly, and the brittle metal will shatter, sending sharp shrapnel into the air. Proper B2B safety protocols, non-magnetic jigs, and PPE are mandatory during assembly.
Absolutely. We are a direct B2B supplier for global OEMs. We manufacture custom Neodymium grades (from N35 to N54, plus high-temp grades), precision-machined into custom geometries (arcs, rings, blocks, countersunk discs) with strict dimensional tolerances and certified flux-density testing for your production lines.
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