Bumper Beams
Use tensile force, clamp stability and spring-back control to keep structural profiles consistent.
Automotive stretch forming
A bending machine manufacturer discussion for bumper beams should start with part drawings, profile material and forming accuracy. Camille's bending equipment manufacturer support helps teams compare CNC or NC control, 35-85KN tensile force and servo chuck options for automotive profiles.

Automotive part map
The same stretch bending platform can support different automotive profiles, but each part needs its own accuracy, spring-back and material conversation.

Use tensile force, clamp stability and spring-back control to keep structural profiles consistent.
Confirm profile length and repeatability when forming long automotive support parts.
Discuss wrinkle and fracture prevention before selecting CNC or NC control.
CNC or NC control
The product family supports both NC and CNC directions. Match the control system to part complexity, budget and forming accuracy.
| Decision item | NC direction | CNC direction | Buying note |
|---|---|---|---|
| Control element | PLC + touch panel | Industrial computer + motion controller | Use CNC when profiles require more programmable control. |
| Hydraulic power | Three-phase asynchronous motor | Servo motor | Servo control supports higher precision and repeatability. |
| Precision | Moderate, for general processing | High, for precision machining | Let part tolerance and consistency goals drive the choice. |
| Task type | Ordinary machining task | High-precision, high-complexity processing | Send drawings and target profiles before model selection. |
Tensile-force model selector
A useful project brief connects part geometry with tensile force, material length, chuck control and cycle expectation.
Maximum tensile force options include 35KN, 55KN and 85KN for different forming loads.
The longest stretch bending material value is 1.8m, so long profile projects should confirm actual part size.
Chuck reset uses servo motor control, while chuck rotation servo control is optional.
Related machines
If the bumper beam machine is not the exact fit, these related machines keep the review inside Camille's metal forming range.

For projects that need CNC-controlled 2D or 3D profile forming.
View CNC Stretch Bender
For general 2D profile processing where NC control is enough.
View 2D NC Machine
For 3D profile bending projects that need a different NC machine route.
View 3D NC Machine
For radius forming and rolling paths outside stretch bending.
View Roll BenderPlanning reads
These Camille articles help teams connect automatic bending, shape consistency and CNC selection before model discussion.
Frame automation, repeatability and production workflow before comparing equipment.
Read Automation NotesReview how stretch forming supports bumper beams and similar automotive parts.
Read Shape NotesUse automotive precision, material and control expectations to prepare the CNC discussion.
Read CNC NotesBumper beam machine FAQ
It is designed for bumper beams, roof rails, pillars and related automotive components that require controlled stretch bending.
NC control is better for general processing and lower cost targets, while CNC control is stronger for high-precision and high-complexity forming tasks.
The technical parameters include 35KN, 55KN and 85KN maximum tensile force options.
The longest stretch bending material length is 1.8m.
Discuss servo motor control for chuck reset and the optional servo motor control for chuck rotation.
Send part drawings, material type, material length, target tensile force, required precision, production rhythm and whether CNC or NC control is preferred.