| Forming stands | 12–16 stands | More stands generally provide smoother forming, better profile control, and lower deformation stress. | Choose 12–14 stands for standard U panels; consider 15–16 stands for deeper profiles, thicker steel, or tighter dimensional control. |
| Cut-length accuracy | Target: ±1 mm | Accurate cutting reduces installation gaps, material waste, and adjustment work on site. | Confirm the tolerance under actual production conditions, including material thickness, line speed, and batch length. |
| Compatible material | Pre-painted steel, galvanized steel, or stainless steel | Material grade and surface coating affect roll design, forming force, and surface protection. | Verify compatibility with the required yield strength, coating type, and surface finish before selecting the tooling. |
| Material thickness | Approximately 0.6–1.5 mm for common steel panel applications | Thickness determines the required forming force, roll strength, shaft diameter, and drive capacity. | Select a machine based on the thickest material in the production plan, not only the current specification. |
| Panel width | Define according to the finished U-panel profile and coil width | Incorrect width assumptions can cause edge trimming, unstable feeding, or unusable finished panels. | Provide a section drawing showing finished width, flange dimensions, bend radii, and allowable tolerances. |
| Production speed | Approximately 8–15 m/min, depending on profile and cutting method | Higher speed improves output but may increase vibration, burrs, and length variation if the line is not properly synchronized. | Compare rated speed with the expected operating speed while maintaining the ±1 mm cut-length target. |
| Cutting method | Flying cut or stop-to-cut system | The cutting method affects line speed, cut-end quality, production continuity, and length accuracy. | Use flying cutting for continuous production; use stop-to-cut when lower speed and simpler operation are acceptable. |
| Roller and shaft design | Precision-machined rollers with adequately sized shafts | Rigid tooling helps maintain profile symmetry and minimizes deflection during forming. | Check roller material, shaft diameter, bearing arrangement, and adjustment accessibility. |
| Drive and control system | Variable-speed motor, encoder feedback, and programmable control | Synchronized feeding and cutting are essential for repeatable length accuracy. | Confirm encoder resolution, length-setting range, emergency-stop functions, and fault diagnostics. |
| Quality verification | Test production using the customer’s material and profile drawing | A machine may perform differently when material strength, coating, or profile geometry changes. | Measure finished length, profile dimensions, squareness, surface condition, and cut-edge quality across multiple pieces. |