
The transformer coil cross lifting beam is designed for lifting and positioning coils with different diameters and axial thicknesses. Its cross-beam angle, lifting-leg position, lower lifting feet and four pressing rods can be adjusted around the coil geometry before the lift, creating a more controlled support arrangement for workshop transfer and assembly.
A fixed lifting frame can only match a limited range of coil sizes. Transformer factories, however, often handle coils that vary in outside diameter, axial thickness and lifting position. The cross lifting beam addresses this variation through four independent adjustment areas rather than relying on a single fixed span.
Before lifting, the operator configures the beam to the actual coil drawing. The cross-beam angle defines the overall geometry, the lifting legs are positioned to suit coil diameter, the lower lifting feet are set to the coil thickness, and the pressing rods are adjusted to restrain axial movement.
| Product type | Adjustable cross lifting beam |
| Cross-beam angle | Adjustable from 60° to 90° |
| Lifting-leg adjustment | Horizontal movement along the cross beam |
| Leg adjustment options | Manual or electric |
| Lifting-foot adjustment | Horizontal movement in lower guide grooves |
| Pressing rods | Four downward rods with rapid adjustment and fine tuning |
The lifting legs move horizontally along the cross beam. Their positions are set according to the coil diameter and the approved lifting points.
The lower lifting feet move in guide grooves at the ends of the lifting legs. The support position is adjusted to suit the axial thickness of the coil.
They provide axial stabilization after the main beam, leg and foot positions have been set. Rapid adjustment brings each rod into position, while fine tuning controls the final contact setting.
Yes. The lifting-leg movement can be configured for manual or electric adjustment.
The cross-beam angle can be adjusted from 60° to 90°.
No. The rated capacity must be selected and verified against the maximum coil weight, beam geometry, support positions and crane conditions.
Confirm the coil drawing, support positions, pressing-rod contact, crane connection and balance through a low-height trial lift before transfer.



