Neodymium Male Thread Pot Magnet D32mm
Neodymium Male Thread Pot Magnet D32mm
Available in stock
This Neodymium Male Thread Pot Magnet has a 32mm diameter and provides powerful magnetic holding strength in a compact format. Featuring a Rare Earth Neodymium core encased in a durable steel pot housing, the magnet’s force is concentrated on the base surface for maximum pull strength. The male threaded stud makes it easy to attach hooks, brackets, and other fittings, offering a versatile fastening solution for industrial, retail, and DIY applications. A Nickel coating ensures long-lasting durability and resistance to corrosion.
Key Features:
Diameter: 32mm
Attachment: Male threaded stud for secure fittings
Material: Neodymium Rare Earth Magnet in steel pot housing
Finish: Nickel plating for corrosion and wear resistance
Compact Strength: Strong holding power in a small footprint
Applications:
This threaded pot magnet is ideal for engineering, warehousing, retail, and trade use. Typical applications include:
Mounting hooks, eyelets, and brackets with threaded fittings.
Holding or suspending tools and fixtures in workshops and factories.
Retail displays and signage requiring secure, removable mounting points.
DIY and home organisation projects needing compact but strong fixings.
Engineering and prototyping where threaded adaptability is essential.
Benefits:
Reliable Holding Force: Concentrated pull strength thanks to pot design.
Threaded Versatility: Male stud is compatible with a wide range of attachments.
Durable Finish: Nickel coating protects against rust and corrosion.
Reusable & Flexible: Perfect for both temporary and permanent setups.
Compact Performance: Strong magnetic force without taking up excess space.
Pull Force Information
Pull Force Information
Pull force refers to the maximum holding strength of a magnet. Measured in kilograms, it represents the amount of weight a magnet can support when attached to 10mm thick mild steel, with full, flat, and direct surface-to-surface contact.
A magnet's pull force can be affected by several factors, including its orientation (horizontal vs. vertical) and the presence of any air gaps between the magnet and the surface it’s attached to.
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