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Elektromagnetischer Spreizer zum Heben großer Stahlstangen

Elektromagnetischer Spreizer zum Heben großer Stahlstangen

Nenntragfähigkeit: 5-50 Tonne
Number of Electromagnetic Poles: 4-12 (Anpassbar)
Working Voltage: DC 220V / 380V
Magnetic Force Retention Time: ≥30 Minutes (After Power Off)

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The electromagnetic spreader is a specialized lifting equipment designed to efficiently and safely handle bulk steel rods in various industrial scenarios. As a core tool in material handling, it leverages electromagnetic force to adsorb and transport steel rods, eliminating the need for traditional binding or clamping methods. This not only streamlines the lifting process but also minimizes the risk of damage to the steel rods and ensures operational safety. Specifically engineered for bulk steel rod lifting, this electromagnetic spreader combines advanced magnetic technology, robust structural design, and intelligent control systems to meet the high demands of modern industrial production.

Elektromagnetischer Spreizer zum Heben großer Stahlstangen

Core Features of the Electromagnetic Spreader

Elektromagnetischer Spreizer zum Heben großer Stahlstangen

Electromagnetic Spreader Technical Parameters

Parameter
Spezifikation
Nenntragfähigkeit
5-50 Tonne
Number of Electromagnetic Poles
4-12 (Anpassbar)
Working Voltage
DC 220V / 380V
Magnetic Force Retention Time
≥30 Minutes (After Power Off)
Suitable Steel Rod Diameter
10-200 mm

Elektromagnetischer Spreizer zum Heben großer Stahlstangen

Electromagnetic Spreader Application Scenarios

Elektromagnetischer Spreizer zum Heben großer Stahlstangen

Advantages of Using Electromagnetic Spreader

Elektromagnetischer Spreizer zum Heben großer Stahlstangen

The electromagnetic spreader for lifting bulk steel rods offers significant advantages over traditional lifting equipment. Firstly, it improves lifting efficiency by enabling simultaneous handling of multiple steel rods, reducing the number of lifting cycles. Secondly, it enhances operational safety with its multiple safety protection systems, minimizing the risk of accidents. Thirdly, it reduces product damage as there is no physical clamping or binding, ensuring the surface quality of the steel rods. Finally, it has low maintenance costs due to its simple structure and high-quality components, providing long-term economic benefits for users.

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