Neodym-Röhrenmagnet
| Material | NdFeB |
|---|---|
| Form | Ring |
| Beschichtung | Nickel |
| Größe | Anpassbar |
| Toleranzen | 0.02mm/0.001" |
| Richtung der Magnetisierung | Anpassbar |
Magnet Einführung
BMAG Neodymium Tube Magnets are defined by their extended axial length relative to their diameter. Unlike standard thin rings, the tube geometry provides a deep magnetic “well” and a significantly larger surface area for flux interaction. This elongated structure is perfect for creating long, uniform magnetic fields along a shaft or within a cylindrical housing, where a series of shorter magnets would be difficult to align or secure.
The tube design allows for complex magnetization patterns, including multi-pole axial or diametric magnetization. Because long tubes are naturally more susceptible to structural stress, we use a refined sintering process that increases the structural integrity of the NdFeB crystalline lattice. This reduces the risk of longitudinal cracking under thermal expansion. The interior bore is polished to a mirror finish to allow for the frictionless passage of components or fluids, making it a “smart” choice for high-tech flow control and linear motion systems where the magnetic field must be maintained over a greater distance.
Neodymium Tube Magnet Dimension Diagram
Ringmagnetisierung Richtung der Magnetisierung
Magnet-Spezifikation
| Material | NdFeB |
|---|---|
| Form | Ring |
| Beschichtung | Nickel |
| Größe | Anpassbar |
| Toleranzen | 0.02mm/0.001" |
| Richtung der Magnetisierung | Anpassbar |
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