Analyzing your Product SMARTWATCH Double Sided 300-500KG Magnet Fishing Kit Neodymium Magnets Rope Claw Gloves Glue Plastic Shovel Bag Magnetic Recovery Salvage

Double Sided 300-500KG Magnet Fishing Kit Neodymium Magnets Rope Claw Gloves Glue Plastic Shovel Bag Magnetic Recovery Salvage

Double Sided 300-500KG Magnet Fishing Kit Neodymium Magnets Rope Claw Gloves Glue Plastic Shovel Bag Magnetic Recovery Salvage post thumbnail image


Price: 24.69 - 20.99

Mainly made up of N52 neodymium magnet and a steel shell, it can concentrate the magnetic field on thebottomof magnet which increase the magnetic force by 2.5-4 times compared to the naked magnet .
The steel cup can prevent the naked magnet from scratch and chipping during grabbing and clamping.
It is designed for heavy duty and underwater useand helps to recover lost equipment, tools, fishing tackles and other ferrous objects in deep water, wells, holes. It is also great for magnet lifting, hanging applications.

Specification

1. Material: Neodymium Magnet N52+A3 Steel+Black Resin

2.Magnet Size:

Diameter 60mm*22mm (150KG Vertical *2 )

Diameter 67mm*25mm (180KG Vertical *2 )

Diameter 75mm*25mm (250KG Vertical *2 )

3. Rope Size: 20 Meters (Rope diameter 5mm for 150KG double sided magnet,Rope diameter 6mm for 180KG&250KG double sided magnet)

4. Vertical Pull-force: 150KG/180KG/250KG on base of 30mm thickness steel plate.

5. Max Working Temperature:80℃


Note:
1.The magnetic force 150KG/180KG/250KG is vertical pull-force which make the magnet pull way from the thick 30mm steel plate of a tensile tester under ideal condition. The actual pull force will vary mainly depending on the following variables:

A: Steel thickness (The thicker the steel is, the stronger the pull force)

B: Pulling direction (The smaller the angle taking 90° as a standard, the stronger the pull force), the Pull force in horizontal direction is only about one third of that in vertical direction)

C: Attracting position (The farther beyond the center of gravity of the attracted object, the lower the pull force)

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