Rubber Magnet M4 Threaded Stud Black | Ø12mm Neodymium - SAV
Rubber Magnet M4 Threaded Stud Black | Ø12mm Neodymium - SAV
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Rubber Magnet M4 Threaded Stud Black | Ø12mm Neodymium - SAV
Rubber Magnet M4 Threaded Stud Black | Ø12mm Neodymium - SAV

Rubber Magnet M4 (Threaded Stud) - Ø12mm - Black - Neodymium

Article number: SAV 240.41-MG12-M4x8
Zwart
€2.95

Professional blacke rubber coated magnet with M4 thread (stud).
This high-quality industrial neodymium system combines strong holding force with a scratch-free finish. Ideal for discreet mounting on white surfaces.

Specifications:
• Dimensions: Ø 12 x height 7 mm
• Thread: M4 (threaded stud)
• Pull force: 1.3 kg / Shear force: 0.5 kg
• Max. temperature: 60°C

Need larger quantities? Request a quote!

Volume discounts

Quantity Unit price You Save
10 €2.88 €0.74
25 €2.80 €3.69
50 €2.66 €14.75
100 €2.51 €44.25
Feature Specification
Diameter (D) 12 mm
Height (H) 7 mm
Threaded stud (M) M4 x 8 mm
Total height (L) 15.5 mm
Pull force 1.3 kg
Shear force 0.5 kg
Max. operating temp. 60 °C
Weight 4.5 gr

This industrial Neodymium magnet system is encased in a robust black Santoprene (TPE) rubber coating. It provides extremely strong adhesion while protecting sensitive metal surfaces from scratches.

Why this system is the best choice:

  • High friction force: The rubber jacket significantly prevents sliding on vertical walls.
  • Scratch-free mounting: Gentle on paintwork (e.g., vehicles) and delicate housings.
  • Weather resistant: The black coating is UV-resistant and protects the Neodymium core from moisture.

Frequently Asked Questions (FAQ):

  • Is the black rubber coating suitable for outdoor use?
    Yes, the black TPE coating effectively protects the magnet from corrosion and environmental influences.
  • Can I use the magnet on car paint?
    Absolutely. The soft rubber layer prevents damage and is designed for direct use on painted surfaces.
  • Why is shear force so important?
    Due to the high friction of the rubber, the magnet can hold significantly more weight on vertical surfaces than an unprotected metal magnet.
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