Locate feed points
Record the charging bin, pickup position and receiving hopper for each material.
Ferroalloy charging combines frequent raw-material pickups with a harsh process area where manual hook handling slows the cycle.
Henan Mine Crane equipment for Ulanqab ferroalloy project
Ferroalloy charging combines frequent raw-material pickups with a harsh process area where manual hook handling slows the cycle.
Design the crane, grab or charging attachment, hopper locations and remote control as one process cell. Automatic pickup, travel and release are governed by position feedback and anti-sway control, while operators supervise from a safer location.
Follow the load through the operation to see where lifting equipment, tooling and controls must work together.
Record the charging bin, pickup position and receiving hopper for each material.
Coordinate attachment engagement, travel and positioning before releasing the charge.
Test repeatability, visibility, fault response and safe manual recovery with the real material.
These choices affect safety, process fit and the operating life of the installation.
The attachment must reach the hopper consistently without striking process equipment.
Define monitored operating zones, interlocks and recovery after a failed pickup.
See how cranes and lifting systems were configured for demanding operating environments.

Multiple automated metallurgical cranes were placed into service for a ferrochrome project in Ulanqab, with remote centralized control for hook engagement, charging and material transfer.
These product families support the handling tasks above. The final crane and attachment are selected from the site brief.
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 ↗Start with a load schedule and site plan. Our team can help develop the matched crane arrangement and technical scope.
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