| name | roll-forming |
| description | Roll forming process design — pass schedule (number of passes, bend angle per pass), flower pattern, springback compensation (overbend), roll tooling (material, hardness, surface finish), material selection (HSLA, stainless, coated steel), speed and lubrication, strip width calculation (developed length), side edge conditions, bow and camber, forming limits (r/t ratio, crack avoidance), tolerance capabilities, and applications (structural sections, gutters, automotive door frames). |
| metadata | {"priority":7,"promptSignals":{"phrases":["roll forming","rollforming","roll form tooling","flower pattern","pass schedule","profile roll forming"],"minScore":3}} |
Roll Forming Process Design — Complete Skill
Process Overview
Roll Forming Principle
Roll forming: continuous bending of a flat strip through successive pairs of rolls (passes); each pass adds a small incremental bend to form a complex cross-section profile
Advantage over press braking: continuous (high speed); complex profiles; long lengths; consistent
Limitation: high tooling cost; not economical for short runs (< 5,000 m typically)
Applications:
Structural: C-channel, Z-section, hat section, square/rectangular tube, roof decking
Automotive: door frames, window tracks, seat tracks, bumper reinforcements
Building: rain gutters, downspouts, standing seam roofing, siding
Material: low carbon steel, HSLA (High Strength Low Alloy), stainless, aluminum, copper, pre-coated steel
Production speeds:
Mild steel: 30–120 m/min; HSLA: 20–80 m/min; aluminum: 60–150 m/min; stainless: 15–60 m/min
Higher speed → more heat from friction → lubricant critical
Pass Schedule Design
Number of Passes (N_passes)
Empirical rules for estimating N_passes:
N ≥ θ_total / (3 × ∛(r/t)) [rough estimate; θ_total = total bend angle; r = bend radius; t = thickness]
More practically: use experience tables or forming simulation software
General guidelines:
| Total angle | Material yield strength | Min passes |
|---|
| 90° single bend | < 400 MPa | 3–5 |
| 90° single bend | 400–700 MPa (HSLA) | 5–8 |
| 90° single bend | > 700 MPa (AHSS) | 8–12 |
| 180° fold | Any | 6–10 |
| Complex (multiple bends, > 270° total) | Any | 15–30+ |
Angle per pass:
Δθ_pass = θ_total / N_passes [uniform distribution; but often non-uniform: larger increments early, smaller near final]
Too large Δθ: edge cracking, tool wear; too small: unnecessary passes, high tooling cost
Flower Pattern (Unfolding Diagram)
Flower pattern: shows cross-sections at each pass (from final profile going backward to flat strip)
Constructed by:
- Start with final cross-section
- At each prior pass: open bends by Δθ (going in reverse from pass N to pass 1)
- Each intermediate profile = flower petal
Software: COPRA RF (Data M), RollForm Design (Bradbury), QUINT Rollform (Matsushita)
Manual: draw each intermediate cross-section in CAD; check clearances and material flow
Strip width (developed length):
L_strip = Σ(straight segments) + Σ(arc lengths)
Arc length = (π/180) × θ_bend × (r + k × t) [k = neutral axis factor; k ≈ 0.33 for r/t < 2; k ≈ 0.5 for r/t > 4]
Simplified: k = r/(r + t) × t for transition
Springback and Overbend
Springback in Roll Forming
Springback: elastic recovery after forming; bend angle recovers partially after leaving roll gap
Springback angle:
Δθ_spring = θ_formed - θ_final = (M / (E × I / r)) × (1 - σ_y × (r + t/2) / (E × t/2))
Simplified springback ratio:
θ_final/θ_formed ≈ 1 - (3 × r_neutral × σ_y)/(E × t) [for thin sheet; r_neutral = neutral axis radius]
For steel (E = 200 GPa, σ_y = 300 MPa, r = 3 mm, t = 1 mm):
Springback ≈ 1 - 3 × 3.5 × 300,000 / (200×10⁶ × 0.001) = 1 - 1.575/200 ≈ 0.992 (0.8% recovery per 90° bend)
Negligible for mild steel; significant for HSLA/AHSS: up to 5–15° on 90° bends
HSLA springback:
σ_y_HSLA = 500–700 MPa → springback ratio ≈ 1 - 3rσ_y/(Et) ≈ 0.97–0.94 → 6–9° underbend on 90°
Must overbend by springback amount in final pass
Overbend compensation:
Roll gap set to θ_overbend = θ_design + Δθ_springback
Tool radius r_tool = r_final × E / (E - 3σ_y/t × r_final) → back-calculate required tool radius to achieve final r
Roll Tooling Design
Roll Materials and Hardness
Tool steel materials:
| Material | Hardness (HRC) | Application |
|---|
| D2 (Cr/Mo/V cold work) | 58–62 | Standard; mild to HSLA steel; good wear |
| A2 (medium alloy) | 56–60 | Better toughness than D2; HSLA; slightly lower wear resistance |
| M2 (high-speed steel) | 60–65 | High-speed forming; stainless steel; best wear; more expensive |
| H13 (hot work) | 44–48 | High-temperature applications; soft materials with heat |
| Carbide inserts | HV 1,500+ | Ultra-hard; narrow contact widths; long runs |
Roll surface finish:
Ra = 0.4–0.8 μm for coated materials (avoid scratching coating)
Ra = 0.8–1.6 μm for uncoated; sufficient to hold lubricant
Roll dimensions:
Roll diameter D_r: typically 150–250 mm for light gauge (<2 mm); 250–400 mm for heavy gauge (>3 mm)
Roll face width: cover strip + side clearance (5–10 mm each side)
Roll gap: set to t_material + 5–15% (slight compression assists forming and edge control)
Material Forming Limits
Minimum Bend Radius
Minimum inside bend radius without cracking (r_min/t):
| Material | r_min/t |
|---|
| AISI 1010 (soft steel) | 0.5–1.0 |
| AISI 1050 (medium carbon) | 1.0–2.0 |
| HSLA 50 (340 MPa) | 1.0–1.5 |
| HSLA 80 (550 MPa) | 2.0–3.0 |
| DP590 (dual phase) | 1.5–2.5 |
| DP980 | 3.0–5.0 |
| Stainless 316 | 1.0–1.5 |
| Aluminum 5052-H32 | 1.5–2.5 |
| Aluminum 6061-T6 | 4.0–6.0 |
Edge cracking: occurs at strip edge; edge quality critical (cut vs. slitted; edge condition: smooth vs. burr)
Edge crack avoidance: dull or smooth slitting; edge chamfer; use pre-notched corners for sharp features
Lubrication
Functions: reduce friction (tool wear, heat), prevent pickup/galling, protect coated surfaces
Lubricants:
Light mineral oil (ISO 32–100): mild steel; good rust protection; easily removed (detergent wash)
Vanishing oil: evaporates after forming; no cleaning needed; pre-coated or precision parts
Dry lubricant (wax, PTFE): pre-applied to coil; no oil in forming zone; food grade or corrosion applications
Cutting fluid with EP additives: for HSLA/stainless; prevents galling
Application: flood, spray, or pre-applied film on coil; apply 0.5–2.0 g/m² typical
Common Defects and Causes
| Defect | Cause | Remedy |
|---|
| Edge wave | Excessive forming speed or large angle per pass | Reduce speed; add passes |
| Bow (longitudinal) | Asymmetric forming; unequal tension | Straightener rolls; adjust pass angles |
| Camber (lateral curve) | Strip tension imbalance; edge elongation | Adjust roll alignment; reduce strip width variation |
| Springback variance | Material yield stress variation (lot-to-lot) | Closed-loop angle control; more passes |
| Galling (tool pickup) | Inadequate lubrication; surface hardness | Increase lubrication; use harder roll material |
| Edge cracking | r/t too small; sharp burrs on strip edge | Increase radius; condition strip edge |
| Twist | Asymmetric geometry; roll misalignment | Anti-twist guides; precision alignment |
Dimensional Tolerances
Achievable tolerances (strip thickness 0.5–3 mm):
Width of profile: ±0.5–1.5 mm; angle: ±0.5–1°; length (flying cutoff): ±0.5–2.0 mm
Straightness: ≤ 1 mm/m bow; ≤ 0.5 mm/m camber
Coating preservation: Pre-coated (galvanized, pre-painted) — bend radius ≥ 1.5t to avoid coating fracture
Standards and References
| Standard | Scope |
|---|
| AISI Design Manual for Cold-Formed Steel | Roll-formed structural sections design |
| ASTM A1008 | Cold-rolled steel strip for roll forming |
| ASTM A1011 | Hot-rolled strip; higher strength for structural |
| AWS D1.3 | Structural welding of sheet steel (for welded roll-formed assemblies) |
| Halmos "Roll Forming Handbook" (2006) | Definitive roll forming reference |
Output
Provide: profile description (cross-section sketch or description; key dimensions; total bend angle θ_total [°]; thickness t [mm]), material (grade; σ_y [MPa]; elongation [%]; r_min/t check for each bend), developed strip width L_strip [mm] (with neutral axis k; arc + straight segments), pass schedule (N_passes; angle per pass Δθ [°]; intermediate cross-sections from flower pattern), springback (Δθ_spring [°] at last pass; overbend angle in final pass; critical for HSLA?), roll tooling (material D2/M2; hardness HRC; D_roll [mm]; roll face width [mm]; surface finish Ra [μm]), lubrication (type; application rate [g/m²]; coated steel precautions), forming speed [m/min] (recommendation for material/thickness), defect risk assessment (edge wave, bow, galling: likelihood and mitigation), achievable tolerances (width [mm]; angle [°]; straightness [mm/m]), and applicable standard (AISI Design Manual, Halmos Roll Forming Handbook).