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Neodymium Pot Magnet with Threaded Eyelet - 60mm x 8mm
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Product details
- SKU AMFYPF60
-
Pull Force*
113kg
The Pull Force listed for each magnet is based on lifting 10mm thick steel from a horizontal surface. Magnets on a vertical surface (of 10mm thick steel) are generally able to hold around only 30% of the pull force listed in the product description. This is due to the effects of gravity and the lack of friction between the surface and the shiny magnet. Read More
- Weight357.5 gm
- StyleRare earth threaded eyelet pot magnet
- CoatingNickel (NiCuNi)
- Direction of MagnetisationAxially magnetised thru the 15mm
Neodymium Pot Magnet with Threaded Eyelet – 60mm x 8mm
The Neodymium Pot Magnet with Threaded Eyelet – 60mm x 8mm is a powerful rare earth mounting and holding magnet featuring a 60mm diameter magnetic base, 8mm pot height and threaded eyelet attachment. Combining high-performance Neodymium Iron Boron (NdFeB) magnetic material with a protective steel pot housing, this magnetic assembly provides a convenient removable attachment point on compatible ferromagnetic steel surfaces.
The steel pot helps protect the brittle neodymium magnet while directing and concentrating magnetic flux towards the active working face. The integrated threaded eyelet provides an accessible connection point for compatible ropes, cords, cables, hooks and other suitable attachments, depending on the requirements of the application.
This 60mm eyelet pot magnet is suitable for industrial holding, signage, displays, temporary fixtures, workshops, warehouses, equipment mounting and general magnetic attachment applications where a removable and repositionable connection to steel is required.
Key Features
- 60mm diameter magnetic base
- 8mm pot height
- Threaded eyelet attachment
- Neodymium Iron Boron (NdFeB) rare earth magnet
- Steel pot / cup housing
- Steel housing helps concentrate magnetic flux towards the working face
- Removable and repositionable magnetic attachment
- Eyelet provides a convenient attachment point
- Permanent magnetic operation
- No electricity or batteries required
- Suitable for compatible ferromagnetic iron and steel surfaces
- Useful for industrial, commercial, workshop and display applications
Common Applications
- Sign hanging and mounting
- Displays and exhibitions
- Temporary fixtures
- Workshop organisation
- Warehouse applications
- Equipment positioning
- Cable and cord attachment
- Industrial mounting
- Temporary barriers or markers
- Manufacturing
- Maintenance applications
- General-purpose magnetic attachment
60mm Diameter Magnetic Base
The pot magnet features a 60mm diameter magnetic base, providing a relatively broad working face for attachment to suitable ferromagnetic steel.
The 8mm pot height provides a low-profile magnetic base that can be useful where the magnetic component needs to remain relatively compact while the eyelet provides an accessible attachment point.
Potential mounting surfaces include:
- Steel beams
- Steel frames
- Machinery
- Equipment housings
- Steel cabinets
- Ferromagnetic brackets
- Workshop structures
- Compatible steel panels
For strongest practical attraction, the magnetic working face should make broad, flat contact with clean and sufficiently thick steel.
Threaded Eyelet Attachment
The supplied threaded eyelet provides a convenient connection point above the magnetic base.
Depending on the application, the eyelet may provide an attachment point for compatible:
- Cords
- Ropes
- Cables
- Hooks
- Straps
- Signs
- Display components
- Lightweight accessories
The eyelet's specific thread size, thread depth and internal eye diameter have not been supplied and should be confirmed before integrating the magnet with other threaded components.
Ensure the eyelet is correctly threaded and securely engaged before applying a load.
Removable Magnetic Mounting
One of the key advantages of an eyelet pot magnet is the ability to create an attachment point on compatible steel without permanently modifying the supporting surface.
Unlike conventional mounting methods, a magnetic attachment may eliminate the need to:
- Drill holes
- Weld brackets
- Install permanent anchors
- Apply adhesive to the support surface
The magnet can also be removed and repositioned when requirements change, making it useful for temporary and adjustable installations.
How Does a Neodymium Pot Magnet Work?
This magnetic assembly combines NdFeB rare earth magnetic material with a steel pot or cup.
The neodymium magnet generates the magnetic field, while the surrounding steel housing helps redirect and concentrate magnetic flux towards the active face.
When the working face contacts suitable ferromagnetic steel, the steel target completes the magnetic circuit and provides an attractive holding force.
This pot-style construction also provides additional mechanical protection around the brittle neodymium material.
Neodymium Rare Earth Magnetic Performance
Neodymium Iron Boron (NdFeB) is a high-performance permanent magnetic material known for producing strong magnetic fields relative to its size.
This makes neodymium pot magnets particularly useful for compact magnetic mounting systems.
Because this is a permanent magnetic assembly, it requires:
- No electricity
- No batteries
- No charging
- No electrical switching
The magnetic field remains continuously active.
Magnetic Holding Performance
Actual magnetic holding performance depends on the complete installation and cannot be determined from magnet diameter alone.
Important factors include:
- Steel thickness
- Steel composition
- Surface flatness
- Available contact area
- Paint and coatings
- Rust
- Dirt or contamination
- Air gaps
- Load direction
- Vibration
- Movement
- Leverage created through the eyelet
No specific pull force has been supplied for this product and a holding capacity should not be inferred solely from its 60mm diameter or neodymium construction.
Direct Pull vs Shear Force
Magnetic holding performance varies significantly with load direction.
A pot magnet generally performs most effectively when the force attempts to pull the magnetic face directly away from a flat steel surface.
When attached to a vertical surface, the load may instead act in shear, encouraging the magnet to slide.
Practical vertical holding performance can therefore be substantially lower than direct pull performance.
Always consider the intended mounting orientation when selecting a magnetic attachment.
Eyelet Leverage and Load Direction
The threaded eyelet positions the attachment point away from the magnetic working face. Depending on how a load is applied, this can create leverage or peeling forces on the magnetic base.
Sideways pulling, swinging loads or forces applied at an angle may reduce the practical holding performance of the assembly.
For best performance:
- Keep loads controlled
- Minimise sideways force
- Avoid shock loading
- Avoid excessive leverage
- Maximise flat magnetic contact
- Assess vibration and movement
Where accidental detachment could create a hazard, use an appropriate secondary retention system.
Air Gaps and Surface Conditions
Even a small gap between the magnetic face and steel target can reduce magnetic attraction.
Air gaps may be created by:
- Paint
- Powder coating
- Rust
- Protective films
- Dirt
- Uneven steel
- Surface contamination
For strongest practical attraction, use the magnet against a clean, smooth and sufficiently thick ferromagnetic steel surface.
Compatible Target Materials
The magnetic base is designed to attract ferromagnetic iron and steel.
Suitable target surfaces may include:
- Mild steel
- Iron
- Magnetic steel plates
- Steel machinery
- Ferromagnetic structural components
The magnet will not effectively attach to aluminium, copper, brass, plastic, timber or glass.
Many stainless steel grades also provide weak or negligible magnetic attraction and should be tested before use.
Technical Specifications
- Product Type: Neodymium Pot Magnet with Threaded Eyelet
- Alternative Names: Eyelet Pot Magnet, Neodymium Eye Magnet, Rare Earth Eyelet Magnet, Magnetic Eyelet Mount, Magnetic Hanging Magnet
- Magnetic Base Diameter: 60mm
- Pot Height: 8mm
- Attachment: Threaded Eyelet
- Magnetic Material: Neodymium Iron Boron (NdFeB)
- Magnet Type: Rare Earth Permanent Pot Magnet
- Housing: Steel Pot / Cup
- Magnetic Operation: Permanent
- Power Required: None
- Target Surface: Compatible ferromagnetic iron and steel
- Primary Function: Magnetic holding, hanging, positioning and removable attachment
- Typical Applications: Industrial mounting, signage, displays, workshops and temporary fixtures
Installation and Use
Before using the magnet:
- Confirm the target surface is ferromagnetic.
- Clean the magnetic face and target steel.
- Position the complete magnetic face flat against the steel.
- Check that the threaded eyelet is securely installed.
- Attach the intended component to the eyelet.
- Apply the load gradually and confirm the assembly remains stable.
- Consider the effect of vibration, movement, leverage and load direction.
Avoid allowing the magnet to snap uncontrollably onto a steel surface, as the impact can damage the magnet or create a pinch hazard.
Please Note
This product is a Neodymium Pot Magnet with Threaded Eyelet featuring a 60mm diameter magnetic base and an 8mm pot height.
No specific eyelet thread size, thread depth, eyelet dimensions, neodymium grade, coating, pull force, Gauss rating, dimensional tolerance or maximum operating temperature has been supplied and these specifications should not be assumed.
Actual magnetic holding performance depends on target steel thickness and composition, surface condition, contact area, coatings, air gaps, mounting orientation, load direction, leverage, vibration and dynamic forces.
This magnetic assembly should not be treated as certified lifting equipment or used as the sole means of supporting people, safety-critical equipment or hazardous overhead loads. Where accidental detachment could cause injury or damage, use suitable secondary retention.
Neodymium magnetic material is inherently brittle. Prevent uncontrolled impact and do not drill, cut or machine the magnet.
Keep strong neodymium magnets away from children, pacemakers and other medical implants, magnetic storage media and sensitive electronic equipment.

