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MC Electromagnetic Gantry Crane

For steel, port and power-industry yards that need continuous magnetic pickup, transfer and stacking of ferrous materials on a rail-mounted gantry.

Electromagnetic Gantry Crane main product image 1

Henan Mine Crane mc electromagnetic gantry crane showing the primary gantry structure and lifting arrangement.

The MC electromagnetic gantry crane is a double-main-girder gantry crane integrating an electromagnetic lifting device. The source lists scrap steel, iron ore fines and billets as example magnetic materials and positions the crane for metallurgy, ports and power plants.

Buyers should define the magnetic material rather than only crane tonnage. Material shape, temperature, surface condition, pile arrangement and required magnet layout directly affect the lifting device and the total suspended load.

Quick Specifications

Product Model MC
Type-Test Product Name General Gantry Crane
Lifting Capacity Source-stated where published; otherwise project-specific
Span Source-stated where published; otherwise project-specific
Lifting Height Project-specific unless source-stated
Runway / Travel Length Project-specific
Working Duty Source-stated where published; otherwise selected from actual duty
Lifting Attachment According to the product and load
Control Method Source-supported options + project requirements
Operating Environment According to actual site conditions
Best For: For steel, port and power-industry yards that need continuous magnetic pickup, transfer and stacking of ferrous materials on a rail-mounted gantry.

Request A MC Electromagnetic Gantry Crane Quote

Product Overview

Double-main-girder gantry with electromagnetic lifting device.

Source applications include metallurgy, ports and power plants.

Example materials include scrap steel, iron ore fines and billets.

Any capacity, span, speed, synchronization accuracy, wind limit, temperature limit, throughput or other contractual value that is not explicitly published by the source should be engineered from the actual project and written into the technical agreement.

Why Choose MC Electromagnetic Gantry Crane?

Dedicated Magnetic Handling

Efficient for repeatable pickup and release of suitable ferrous material.

Continuous Handling Cycle

Source describes pickup-transfer-release operations for magnetic materials.

Full VFD Control

Supports smoother motion and reduced load swing.

Outdoor Safety Functions

Wind protection is source-listed in addition to overload and travel limits.

Optional Cantilever

Can extend magnetic pickup / discharge positions outside the rail span.

Product Images

Electromagnetic Gantry Crane main product image 2

Official source image associated with the electromagnetic gantry crane, magnetic attachment or steel-handling application.

Electromagnetic Gantry Crane main product image 3

Official source image associated with the electromagnetic gantry crane, magnetic attachment or steel-handling application.

Main Crane Components

Gantry Structure Main girder(s), legs and end structures selected from the exact product layout, load, span and site conditions.
Hoisting / Trolley System Configured around the product's source-described lifting mechanism and operating cycle.
Lifting Attachment Hook, grab, magnet, gantry hook, gate lifting device or construction attachment according to the product.
Gantry Travel System Moves the crane along the fixed ground rail or semi-gantry runway.
Electrical & Control System Configured from source-supported controls and project-specific safety / automation requirements.

Technical Parameters

Model MC
Product Type MC Electromagnetic Gantry Crane
Type-Test Product Name General Gantry Crane
Capacity Project-specific unless source-stated
Span Project-specific unless source-stated
Lifting Height Project-specific unless source-stated
Runway Length Project-specific
Hoisting Speed Project-specific
Trolley Travel Speed Project-specific
Gantry Travel Speed Project-specific
Working Duty Project-specific unless source-stated
Control Method Project-specific
Power Supply According to site electrical conditions
Site Environment According to wind, rain, dust, corrosion and temperature

Source-Confirmed Features & Buyer-Defined Options

Source-confirmed product facts:

  • Double-main-girder gantry with electromagnetic lifting device.
  • Source applications include metallurgy, ports and power plants.
  • Example materials include scrap steel, iron ore fines and billets.
  • Optional cantilever can be provided on both sides, one side or omitted.
  • Full-crane variable-frequency control is source-listed.
  • Modular design and good structural rigidity are source-listed.
  • Safety devices include overload protection, travel limits, buffers and wind protection.

Buyer-defined items:

  • Maximum suspended load including attachment
  • Span / lifting height / runway length
  • Load geometry and lifting points
  • Operating frequency and duty
  • Outdoor / process environment
  • Control, safety and automation scope
  • Rail / foundation or building-runway interface
  • Installation and commissioning scope

Application Scenarios

Scrap Yards Magnetic scrap steel transfer.
Billet / Steel Storage Magnetic product stacking.
Ports Ferrous material loading / unloading.
Power / Industrial Yards Magnetic raw-material handling.

How to Select the Right MC Electromagnetic Gantry Crane

1. Define the Material

Provide grade/type, size, temperature and surface condition.

2. Define Magnet Layout

Quantity, spacing and beam arrangement depend on load geometry.

3. Include Magnet Weight

Magnet and any lifting beam count toward total suspended load.

4. Define Power-Loss Safety

Specify required magnet behavior and backup strategy; the source does not publish a hold time.

5. Define Cantilever and Wind

Outdoor layout should combine outside reach with site wind conditions.

Magnetic Material Data Buyers Must Provide

Material Geometry Scrap, billet and fines require different pickup arrangements.
Temperature Hot material can change magnet selection.
Magnet Weight Include in crane suspended-load calculation.
Power Loss Buyer should define required emergency holding / release logic.

Safety & Control: What Buyers Should Confirm

• Rated capacity / overload protection and attachment weight
• Upper / lower hoisting limits and trolley / gantry travel limits
• Brake and emergency-stop requirements
• Rail-end stops, buffers, anti-collision and wind protection where applicable
• Attachment-specific safety: grab, magnet, metallurgical, gate, tipping or multi-trolley functions
• Operator visibility, remote-control or camera requirements
• Automation / linked-crane fallback and recovery procedures where applicable
• Factory and site load / functional acceptance tests

Installation & Maintenance

Before manufacture, confirm rail center distance, runway length, rail elevation, foundation or building-runway capacity, available lifting height, process clearances, power supply and erection access. Outdoor projects should include wind, rain, temperature, corrosion and anchoring conditions.

Maintenance should follow the final supplied crane manual and actual duty. In addition to hoisting, brakes, ropes, wheels, drives, rails, limits and electrical systems, inspect product-specific devices such as grabs, magnets, gantry hooks, gate equipment, tipping mechanisms, encoders, cameras or automation hardware.

What Information Do We Need for a Quote?

1 Magnetic material type
2 Maximum load / dimensions
3 Material temperature
4 Magnet / lifting-beam arrangement
5 Magnet self-weight
6 Span / lifting height / runway length
7 Cantilever requirement
8 Duty / cycles
9 Power-loss magnet safety requirement
10 Wind / outdoor conditions
11 Control method
12 Yard drawing / destination

Frequently Asked Questions

How is final crane capacity selected?

Use the complete suspended load, including the load plus grab, magnet, gantry hook, lifting beam, rigging or any other below-the-hook equipment.

Can span and lifting height be customized?

Yes. Unless the source publishes a range, these are project-specific and should be selected from the rail layout and working envelope.

What site drawing should I send?

Send a plan and cross-section showing rails, foundations or building runway, loading positions, obstacles, travel length and available clearances.

Can control or automation be customized?

Where the source supports VFD, PLC, linked operation, cameras, access control or other functions, the final scope should be defined from the buyer's process and acceptance requirements.

How should source-reported performance numbers be used?

Treat them as source product data. If a value is contract-critical for a new project, define the test conditions and acceptance method in the technical agreement.

Related Gantry Crane Products

MDG L-Type Gantry Crane
MEH Double-Trolley Truss Gantry Crane
MN Grab & Hook Dual-Purpose Gantry Crane
MEN Double-Trolley Electromagnetic & Hook Gantry Crane
MGBE Double-Trolley Semi-Gantry Crane
MDE Double-Trolley L-Type Gantry Crane

Request A MC Electromagnetic Gantry Crane Quote

Send your maximum load, span, lifting height, runway length, site drawing, operating cycle, load geometry, lifting attachment and special control / environment requirements. Henan Mine Crane engineers can then review the actual process and prepare a project-specific configuration and quotation.

Request A Quote  |  View Gantry Cranes

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