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YZ Double-Girder Casting Overhead Crane

For steelmaking and foundry applications needing an A7 double-girder casting crane for molten-metal transfer, pouring and hot-metal charging.

YZ Double-Girder Casting Crane main product image

Henan Mine Crane yz double-girder casting crane showing the main crane structure and metallurgical lifting arrangement.

The YZ double-girder casting crane is a dedicated metallurgical crane for molten-metal transfer, pouring and hot-metal charging. The source specifies a gantry-type lifting device and working class A7.

For buyers, the crane should be engineered around ladle weight, furnace / converter geometry, production cycle and radiant heat. The source also confirms safety monitoring, PLC + VFD communication control and two-stage hoisting overtravel protection.

Quick Specifications

Model YZ
Type-Test Product Name Metallurgical Overhead Crane
Capacity Configured according to project requirements
Span Configured according to runway center distance
Lifting Height Configured according to process requirements
Working Duty Source-defined where stated; otherwise project-specific
Heat Protection Configured according to actual thermal exposure
Control Method Configured according to project requirements
Best For: For steelmaking and foundry applications needing an A7 double-girder casting crane for molten-metal transfer, pouring and hot-metal charging.

Request A YZ Double-Girder Casting Crane Quote

Product Overview

Dedicated casting crane for molten-metal transfer, pouring and hot-metal charging.

Gantry-type lifting device.

Source working class A7.

Any capacity, span, speed, temperature limit, synchronization accuracy or other guaranteed performance value that is not published on the source page should be confirmed from the actual project and written into the technical agreement.

Why Choose YZ Double-Girder Casting Crane?

A7 Casting Duty

Source specifies A7 for heavy metallurgical service.

Process-Specific Lifting Device

Gantry-type device is designed around ladle handling.

Heat Protection

Structural protection addresses radiant heat in casting areas.

Safety Monitoring

Complete-crane safety monitoring is source-confirmed.

Controlled Motion

Hoisting and travel use dedicated speed-control methods for smoother positioning.

Product Images

YZ Double-Girder Casting Crane metallurgical application image 2

Source image associated with the YZ Double-Girder Casting Crane, showing the crane structure, lifting device or metallurgical application.

Source image associated with the YZ Double-Girder Casting Crane, showing the crane structure, lifting device or metallurgical application.

Source image associated with the YZ Double-Girder Casting Crane, showing the crane structure, lifting device or metallurgical application.

YZ Double-Girder Casting Crane metallurgical application image 5

Source image associated with the YZ Double-Girder Casting Crane, showing the crane structure, lifting device or metallurgical application.

YZ Double-Girder Casting Crane metallurgical application image 6

Source image associated with the YZ Double-Girder Casting Crane, showing the crane structure, lifting device or metallurgical application.

YZ Double-Girder Casting Crane metallurgical application image 7

Source image associated with the YZ Double-Girder Casting Crane, showing the crane structure, lifting device or metallurgical application.

Main Crane Components

Bridge Structure Metallurgical bridge structure selected from load, span, duty and thermal conditions.
Hoisting / Trolley System Configured around the process load and required motion.
Load Handling Device Project-specific ladle device, clamp, hook or charging-box attachment according to the product.
Heat Protection Insulation / high-temperature materials selected around radiant heat.
Safety & Control Configured from source-supported functions and project-specific safety requirements.

Technical Parameters

Model YZ
Product Type YZ Double-Girder Casting Overhead Crane
Capacity Project-specific
Span Project-specific
Lifting Height Project-specific
Hoisting Speed Project-specific
Travel Speed Project-specific
Working Duty Project-specific unless source-stated
Control Method Project-specific
Power Supply According to site electrical conditions
Thermal Environment According to ambient and radiant heat
Safety / Acceptance According to project standard and technical agreement

Source-Confirmed Features & Buyer-Defined Options

Source-confirmed product facts:

  • Dedicated casting crane for molten-metal transfer, pouring and hot-metal charging.
  • Gantry-type lifting device.
  • Source working class A7.
  • PLC, HMI and WLK master controller are source-listed.
  • Hoisting uses stator-voltage speed regulation; travel uses VFD control according to source.
  • Main/end girders use thermal protection against radiant heat.
  • 45-degree split wheel-block structure is integrally machined to improve wheel installation accuracy.
  • Safety monitoring and PLC + VFD communication control are source-listed.
  • Source confirms two-stage upper-limit protection for hoisting.

Buyer-defined items:

  • Maximum suspended load
  • Span and lifting height
  • Operating cycle / duty
  • Thermal exposure
  • Process attachment geometry
  • Control and safety functions
  • Testing and commissioning scope

Application Scenarios

Steelmaking Molten-metal transfer.
Casting Pouring and ladle operations.
Converter Charging Hot-metal charging.
Foundries Heavy molten-metal process handling.

How to Select the Right YZ Double-Girder Casting Crane

1. Calculate Ladle System Load

Include molten metal, ladle and gantry lifting device.

2. Define A7 Operating Cycle

Provide production cycles and shift profile.

3. Define Heat Conditions

State radiant and ambient temperatures.

4. Define Pouring / Charging Geometry

Provide furnace, converter and pouring positions.

5. Define Safety Acceptance

Specify two-stage limits, monitoring and braking requirements.

Casting Crane Safety & Duty

Working Class A7 is source-stated for this product page.
Heat Shielding Define the actual radiant heat at the structure and mechanisms.
Upper Limits Source confirms two-stage hoisting overtravel protection.
Monitoring Define the plant-required alarms, records and safety-monitoring points.

Safety & Control: What Buyers Should Confirm

• Rated capacity / overload protection
• Primary and emergency braking requirements
• Upper / lower hoisting limits and travel limits
• Heat-resistant electrical and mechanical protection
• Safety monitoring / alarms / records where required
• Operator control position and visibility
• Factory and site acceptance tests

Installation & Maintenance

Before manufacture and installation, confirm runway span, rail / runway-beam condition, elevation, available headroom, process equipment clearances, heat sources, electrical supply and erection access. The metallurgical lifting device and safety interfaces should be frozen before production.

Maintenance should follow the final supplied manual and plant safety procedures. In addition to normal crane mechanisms, metallurgical cranes require attention to heat shields, high-temperature cables, brakes, safety limits, lifting devices and safety-monitoring functions.

What Information Do We Need for a Quote?

1 Molten metal / ladle total load
2 Ladle dimensions
3 Gantry lifting-device data
4 Span / lifting height / runway length
5 A7 cycle data
6 Radiant heat
7 Pouring / charging positions
8 Safety monitoring requirements
9 Upper-limit / brake acceptance
10 Control method
11 Workshop layout
12 Destination

Frequently Asked Questions

How is crane capacity selected?

Use the complete suspended load, including the ladle, box, clamp, lifting device or other below-the-hook equipment.

Can capacity and span be customized?

Yes. Unless the source page states a fixed range, capacity and span should be engineered from the project.

Why is radiant heat data required?

Metallurgical crane structural, cable, motor and protection design depends on actual thermal exposure.

Can automation be added?

Where the source confirms PLC, VFD or automation capability, the final automation scope should be defined by the buyer's process and acceptance requirements.

What should be written into the technical agreement?

Any performance that matters contractually—duty, speed, heat protection, synchronization, weighing, automation or safety function—should be stated with its acceptance method.

Related Metallurgical Overhead Cranes

YZD Metallurgical Overhead Crane
YB Slab Handling Overhead Crane
YH Quenching Overhead Crane
YZS Four-Girder Casting Overhead Crane
YX Charging Box Metallurgical Overhead Crane

Request A YZ Double-Girder Casting Crane Quote

Send your load, span, lifting height, runway length, workshop drawing, process cycle, temperature conditions and metallurgical safety requirements. Henan Mine Crane engineers will review the application and prepare a project-specific crane configuration and quotation.

Request A Quote  |  View Overhead Cranes

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