Art. Nr: 36610
Cylindrical V2A neodymium magnet system Ø10x20mm
Neodymium deep pot magnet in a stainless steel housing for applications with aggressive media and a temperature resistance of 110°C. It is attached using the M4 internal thread. Thanks to its high holding force of 8 newtons, it is suitable for a wide range of industrial applications.
€16.65
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€16.65
€15.64
€14.39
Product features
- The V2A housing is seawater-resistant and waterproof.
- High-energy neodymium magnet resistant to demagnetization.
- Threaded hole on the rear in the axial direction.
- V2A housing with h9 tolerance fit.
- Operating temperature from -40°C to +110°C.
Description
| Diameter ØD (mm): | 10 |
|---|---|
| Thread size M: | M4 |
| Holding force (N): | 8 |
| Magnet material: | neodymium |
| Housing material: | stainless steel |
| Color: | silver |
| Temperature resistance (°C): | 110 |
| Weight (kg): | 0.01 |
Technical Drawing
Areas of application
The cylindrical V2A magnet system is characterized by a neodymium magnet core embedded in a stainless steel housing. This design offers high corrosion resistance, is waterproof and allows for use in environments with aggressive media. In addition, the magnet system is temperature-resistant up to 110°C, which makes it ideal for applications that place increased thermal demands:
- Mechanical engineering and medical technology: Due to its robust construction and compact size, this magnet system is particularly suitable for use in areas such as mechanical engineering, the automotive industry and medical technology. It can be used for the secure fixing of components, as a holder in devices or for the positioning of components. The use of stainless steel as the housing material also ensures easy cleaning and sterilization, which is an advantage in hygienically sensitive areas.
- Deep sea technology: The V2A housing is seawater-resistant and waterproof. Since it completely encloses the neodymium magnetic core, the core can exert its strong magnetic force outwards without being destroyed by aggressive media. These properties make it ideal for magnet applications in deep sea technology.