Double-girder bridge crane with lower rotating electromagnetic girder: The "Precision and Efficiency Officer" for Heavy Material Lifting
Tired of manually hooking and adjusting long steel bars in your workshop, wasting half an hour? Is unloading bulk materials in the stockpile area laborious and risky due to "unhooking risks"? Are you always worried about swaying and instability when lifting heavy loads in large-span workshops?
The double-girder bridge crane with lower rotating electromagnetic girder directly replaces the "troublesome aspects" of heavy material lifting with a "high-efficiency mode"—designed specifically for heavy objects such as steel, profiles, and pipes, it's an essential tool for heavy-load lifting in workshops/stockyards.

Technical Parameters:
| Lifting capacity | 10-50 tons |
| Span | 10-32 m |
| Lifting height | 6-18 m |
| Work duty | A5-A7 |
| Beam rotation | Angle: 360° (stepless speed regulation:0-2 r/min) |
| Control method | room control +wireless remote control ( optional ) |
4 Core Advantages, Addressing Pain Points of Heavy-Load Lifting
Double Girder "Robust Strength": Stable Heavy-Load Lifting Without Swaying
The double main girder structure + high-rigidity frame is suitable for heavy-load lifting of 10-50t (larger loads can be customized), ensuring stable operation even in large-span workshops (≤32m span), eliminating the risk of "swaying and damage to the load."
Electromagnetic Suspension Beam: One-Button Lifting, Saving Manpower and Speeding Up the Process
Equipped with a downward-rotating electromagnetic suspension beam, there's no need for manual hooks/ropes—simply align with the steel and apply power with one click for secure lifting. Loose materials, long materials, and bundled materials can all be "stablely lifted without detaching," halving the lifting time per trip and saving 2-3 auxiliary workers.
Flexible Downward Rotation: "Reaching" Even Tough Pile of Materials
The suspension beam supports 360° downward rotation and fine-tuning. Whether the steel is piled horizontally, at an angle, or squeezed deep into the pile, there's no need to repeatedly adjust the crane position; a simple rotation of the suspension beam allows for precise lifting, adapting to complex material yard scenarios.
Maximum Safety: No "Disruptions" During Heavy-Duty Lifting
Features overload protection, electromagnetic power-off retention (maintaining stable lifting for over 30 minutes after power failure), limit alarms, and a dual braking system, ensuring "stable and controllable" lifting throughout heavy-duty operations.
These are the scenarios where it is the "main force" in hoisting:
Steel processing workshops: hoisting profiles, pipes, and steel plates
Storage yards: loading, unloading, and stacking bundles of steel/raw materials
Heavy machinery plants: workshop transfer of large workpieces and molds
Metallurgical plants: cross-regional hoisting of steel billets and coils
Heavy-duty hoisting no longer requires "slow response + multiple people monitoring"—replace it with this technology, turning heavy material handling in workshops/storage yards from "laborious work" into "effortless work"!
