8x3x2 mm N52 Neodymium Magnet (Width 8 mm x Length 3 mm x Thickness 2 mm)

With installments starting from $0.02!
- Stock: Sadece Teklif
- Model: MGK-NEK-16
- Category: Kare Dikdörtgen Neodyum Mıknatıslar
Stock | : | Sadece Teklif |
Model | : | MGK-NEK-16 |
Category | : | Kare Dikdörtgen Neodyum Mıknatıslar |

8x3x2 mm N52 Neodymium Magnet (Width 8 mm x Length 3 mm x Thickness 2 mm)

8x3x2 mm N52 Neodymium Magnet (Width 8 mm x Length 3 mm x Thickness 2 mm)
⚙️ Technical Product Information
✅ Product Name: N35 Neodymium Magnet – Rectangular Type
✅ Dimensions: 8 mm (Width) x 3 mm (Length) x 2 mm (Thickness)
✅ Shape: Rectangle
✅ Material: NdFeB (Neodymium – Iron – Boron)
✅ Grade: N35
✅ Coating: Nickel (Ni-Cu-Ni) Triple Layer Protection
✅ Magnetic Pole Orientation: Face to Face
✅ Magnetic Flux Density (Br): 11.7 – 12.2 kGs
✅ Coercive Force (HcB): ≥ 10.8 kOe
✅ Maximum Energy Product (BHmax): 35 MGOe
✅ Density: 7.5 g/cm³
✅ Maximum Operating Temperature: 80°C
✅ Corrosion Resistance: Medium (nickel coated)
Mechanical Properties
Property | Value | Description |
---|---|---|
Hardness | 600 HV | Brittle structure – low impact resistance |
Compressive Strength | 1000 MPa | High-density structure |
Tensile Strength | 75 MPa | Measured along the magnetic surface direction |
Thermal Expansion Coefficient | 6.5 x10⁻⁶ /°C | Limited thermal stability |
Magnetic Properties
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Magnetization direction: Thickness (2 mm) direction.
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Poles are located on the rectangular surfaces (front and back).
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Magnetic field lines are concentrated in the center of the surface.
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Thanks to its 8x3 mm surface area, it provides high linear magnetic flux density and approximately 900–1000 grf surface pull force (tested on a steel surface).
Applications
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Electronic circuit and sensor applications
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Mechanical prototyping and R&D studies
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Model making and hobby projects
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Mounting solutions in medical and optical equipment
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Used as a magnetic holder or alignment component
⚠️ Warnings and Safety Notes
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Neodymium magnets are very brittle; they can crack under impact, shock, or compression.
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At temperatures above 80°C, magnetic performance may decrease.
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Magnets can quickly attract to each other or to metal surfaces — protective gloves are recommended during handling.
Specifications
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