Skip to content
CRANE MANUFACTURER SINCE 2002
info@hnksglobal.com+86 188 3620 7779Project enquiry ↗
Henan Mine Crane Request a quote
Henan Mine Crane overhead cranes installed in a Southeast Asian steel plant workshop
STEEL & METALLURGY / LIFTING SOLUTIONS

Steel Plant and Metallurgy Crane Solutions

Plan every lift from the melt shop to the finished steel yard.

Overhead cranes at a Southeast Asian steel plant supplied by Henan Mine Crane

THE LIFTING SOLUTION

A coordinated lifting plan for the melt shop, finishing line and yard.

Steelmaking demands different crane arrangements for molten metal, slabs, coils, scrap and bulk raw materials. Henan Mine Crane configures the structure, lifting attachment, controls and protection around each handling route, rather than treating the whole plant as one duty.

The solution divides the plant into handling zones with different loads, temperatures and duty cycles. A dedicated casting crane serves ladle moves in the hot area; slab clamps, magnets or carrier beams move formed steel through finishing and storage; grabs or magnetic systems handle scrap and charge materials. Runways, controls and maintenance access are planned around the transfer points between those zones. Final capacities and protection are confirmed against the plant's lift schedule and drawings.

HANDLING SEQUENCE

How the solution works.

Follow the load through the operation to see where lifting equipment, tooling and controls must work together.

01

Map the handling routes

Record where ladles, scrap, slabs and finished steel are picked up, carried and released, including the hand-off between bays and yards.

02

Separate critical lifts

Give molten-metal lifts a dedicated crane arrangement and safety review, with lifting gear and operating sequence defined for the filled ladle.

03

Match each attachment

Use the material shape and temperature to compare hooks, clamps, magnets, grabs and carrier beams at each station.

04

Integrate plant operation

Check runway loads, crane coverage, control interlocks, service access and the production cycle before finalizing equipment.

HANDLING APPLICATIONS

Different loads call for different lifting arrangements.

Define the material, handling cycle and working zone before fixing the crane arrangement.

01

Molten metal and casting

Match the ladle mass, hook arrangement, heat exposure, working class, redundant protection and emergency operating sequence before selecting a casting crane.

02

Slabs, billets and coils

Choose clamp, magnet or carrier-beam handling from the steel geometry, temperature, stacking pattern and release control required at each station.

03

Scrap and burden transfer

Specify grab or magnetic lifting with the charge volume, cycle rate, visibility, dust, maintenance access and remote-operation requirements.

ENGINEERING DECISIONS

What determines the final configuration?

These choices affect safety, process fit and the operating life of the installation.

01

Molten-metal lift protection

Specify the lifted ladle and rigging mass, thermal exposure, working class and emergency operation for the casting duty. The safety architecture must be approved for the actual process.

02

Material-specific lifting tools

A clamp suited to a slab does not automatically suit a coil or scrap load. Define the load surface, temperature and release method before selecting the attachment.

03

Availability across shifts

Use lifts per hour, travel distance and maintenance windows to size drives and plan access. A capacity figure alone cannot describe steel-plant duty.

DELIVERED PROJECTS

Experience on real jobs.

See how cranes and lifting systems were configured for demanding operating environments.

Overhead crane operating above the production floor of a Southeast Asian steel plant
PROJECT 01

Integrated steel plant in Southeast Asia

More than 100 cranes and lifting systems were applied across the plant, including a 160 t double-girder bridge crane, slab clamps, lower-rotating electromagnetic beams and double-trolley gantry cranes for the port scrap yard.

Upper-rotating carrier-beam crane loaded for delivery to the Baowu Masteel special-steel base
PROJECT 02

Baowu Masteel special-steel base

More than 30 cranes were delivered for the 3.2 million-ton special-steel project, including a 200 t casting crane and upper-rotating electromagnetic beam cranes.

Four-girder casting crane for steel refining operations
PROJECT 03

Jinhui Group refining line

Two 200 t four-girder casting cranes supported hot commissioning as part of a project scope of eight heavy four-girder casting cranes.

SPECIFICATION BRIEF

What we need to size your crane.

Send the operating brief and the relevant layout drawings. The resulting proposal can address capacity, geometry, duty, controls, installation interface and safety requirements as one system.

Prepare your enquiry ↗
  1. 01Maximum lifted mass including ladle, spreader, clamp or magnet
  2. 02Load temperature, ambient heat, dust and corrosion exposure
  3. 03Runway span, hook approach, lift height and wheel-load limits
  4. 04Lifts per hour, operating shifts and required availability
  5. 05Process interlocks, positioning, remote control and safety monitoring
BUYER QUESTIONS

Before the specification is fixed.

Which crane is appropriate for molten-steel ladles?

The selection starts with the filled ladle and lifting gear mass, process duty, heat exposure and safety architecture. A dedicated casting crane is then configured to the plant layout and applicable project standard.

Can one crane handle slabs and scrap?

The load and attachment requirements differ. Compare clamp, magnet and grab arrangements against the material form, handling cycle and release controls before consolidating duties.

NEXT STEP

Tell us what your crane needs to lift.

Start with a load schedule and site plan. Our team can help develop the matched crane arrangement and technical scope.

Start a project enquiry ↗