Rubber Coated Neodymium Pot Magnet – (D) 34mm x (H) 8mm | Countersunk 4.5mm Hole
Rubber Coated Neodymium Pot Magnet – (D) 34mm x (H) 8mm | Countersunk 4.5mm Hole
Available in stock
Enhance your fixing solutions with this Rubber Coated Neodymium Pot Magnet (34mm diameter x 8mm height), engineered for superior holding power and durability. With a 4.5mm countersunk hole, this magnet is easy to mount using flathead screws, making it ideal for both industrial and DIY applications. Despite its compact size, it delivers a strong 4kg pull force, ensuring reliable performance in demanding conditions. This product is identified by AMF Magnetics product code RCND34A.
Key Features:
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Dimensions: 34mm diameter x 8mm height
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Countersunk Hole: 4.5mm for flush mounting with screws
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Magnetic Strength: 4kg pull force
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Material: High-grade Neodymium (Rare Earth) magnet
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Coating: Rubber-coated for durability, scratch-resistance, and extra grip
Benefits of Rubber Coating:
The rubber coating provides multiple advantages:
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Protects delicate surfaces from scratches or marks
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Improves grip by increasing friction on contact surfaces
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Shields the magnet from corrosion, extending lifespan in outdoor or damp environments
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Reduces the risk of chipping or cracking
Applications:
This versatile rubber coated pot magnet is widely used for:
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Outdoor & Industrial Fixings: Securing signs, panels, and fixtures to steel surfaces
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Automotive & Marine Use: Mounting accessories in vehicles, trailers, and boats
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Workshops & Garages: Attaching tools, jigs, or equipment without drilling permanent holes
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Display & Retail Settings: Discreetly holding promotional boards, signage, and displays in place
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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