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Round Cone Neodymium Fishing Magnet with Eyebolt, 575 LBS Pulling Force, 2.95" Diameter x 6.25" Height
Round Cone Neodymium Fishing Magnet with Eyebolt, 575 LBS Pulling Force, 2.95" Diameter x 6.25" Height
Round Cone Neodymium Fishing Magnet with Eyebolt, 575 LBS Pulling Force, 2.95" Diameter x 6.25" Height
Round Cone Neodymium Fishing Magnet with Eyebolt, 575 LBS Pulling Force, 2.95" Diameter x 6.25" Height
Round Cone Neodymium Fishing Magnet with Eyebolt, 575 LBS Pulling Force, 2.95" Diameter x 6.25" Height
Round Cone Neodymium Fishing Magnet with Eyebolt, 575 LBS Pulling Force, 2.95" Diameter x 6.25" Height

Round Cone Neodymium Fishing Magnet with Eyebolt, 575 LBS Pulling Force, 2.95" Diameter x 6.25" Height

SKU: CO-MAG
Regular price
$59.95
Sale price
$59.95
Quantity must be 1 or more

The ultimate magnet specifically designed for MAGNET FISHING. Unique cone shape minimizes edges that can snag on underwater obstacles. The top is threaded for easy and near instant assembly of the included eyebolt. Our 575 lb magnet is also perfect for magnet fishing and retrieving applications. 

This round base cone rare-earth neodymium (NdFeB) magnet is made with A3 steel and coated with Nickel-Copper-Nickel to be the strongest type of permanent magnet available.

Your 100% satisfaction is guaranteed, if this magnet does not meet your expectations, return within 30 days for a full refund.

Specifications:

Dimensions: 2.95” x 6.25”

Material: NdFeB Magnet + A3 Steel

Coating: NiCuNi

Weight: 5.08 lbs

Pulling Force: 575lbs

Recommended Rope: 1/4" Double Braided Rope or 1/3" Heavy Duty Rope 

HOW THE PULLING FORCE IS TESTED
The forces have been determined at room temperature on a plate of polished steel (A36) with a thickness of 1/2 inch.  The pull force is applied perpendicular to the face of the plate.  A maximum deviation of -10% compared to the specified force is possible in exceptional cases, generally the value is exceeded.  Depending on the type of application (thickness/condition of base metal, temperatures, and direction of pull), the forces can be influenced enormously. Mounting on vertical surfaces can reduce the pulling force by up to 70%. The indicated values solely serve a basis for comparison under above stated conditions. Please get advice and help from our experts.

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