| name | crash-analysis |
| description | Crash analysis — FMVSS, EuroNCAP/IIHS tests, energy absorption, crush zone design, deceleration pulse, HIC, thoracic criteria, LS-DYNA FEA methodology, occupant kinematics, restraint systems. |
| metadata | {"priority":7,"promptSignals":{"phrases":["crash analysis","crashworthiness","impact analysis","FMVSS 208","frontal crash","energy absorption crash"],"minScore":3}} |
Crash Analysis — Complete Skill
Regulatory Tests and Standards
FMVSS (US Federal Motor Vehicle Safety Standards)
| Test | Speed | Configuration |
|---|
| FMVSS 208 | 56 km/h (35 mph) | Full-width frontal rigid barrier |
| FMVSS 301 | 80 km/h (50 mph) | Rear 70% overlap |
| FMVSS 214 | 54 km/h (33.5 mph) | Side moving deformable barrier (MDB) |
| FMVSS 216 | Static | Roof crush — 1.5× vehicle weight |
| FMVSS 305 | 48.3 km/h | Rear (electric vehicle) |
EuroNCAP Tests
| Test | Speed | Config | Pass criterion |
|---|
| Frontal ODB | 64 km/h | 40% overlap, deformable barrier | Chest compression ≤ 50 mm |
| Side pole | 32 km/h | 29° angle pole | HIC36 ≤ 650 |
| AEB | 20–60 km/h | Active safety scoring | Collision avoidance |
| Whiplash | 16 km/h | Rear sled | Neck injury criteria |
IIHS Tests
| Test | Speed | Config |
|---|
| Frontal 40% overlap | 64 km/h (40 mph) | 40% offset deformable barrier |
| Small overlap | 64 km/h | 25% offset rigid |
| Side impact | 50 km/h | MDB |
| Moderate overlap | 64 km/h | 40% full frontal deformable |
Injury Criteria
Head Injury Criterion (HIC)
HIC36 = max over 36 ms window:
HIC = [(1/(t₂-t₁)) ∫_{t₁}^{t₂} a(t)dt]^2.5 × (t₂-t₁) [a in g]
Limit: HIC36 ≤ 700 (FMVSS 208); HIC15 ≤ 700 (15 ms window)
Chest Criteria
Chest acceleration:
3 ms clip: a_chest ≤ 60 g (FMVSS); EuroNCAP: a_chest ≤ 30 g for 3 ms
Chest compression:
δ_chest ≤ 76 mm (US); ≤ 42 mm (EuroNCAP frontal, 50 mm alarm)
Viscous criterion (VC):
VC = V × C(t) ≤ 1.0 m/s [V = compression velocity; C = compression fraction]
Neck Criteria
Nij (normalized neck injury):
Nij = F_z / F_zc + M_y / M_yc ≤ 1.0
F_zc = 6806 N (tension); M_yc = 310 N·m (flexion)
NIC (neck injury criterion, whiplash):
NIC = a_head_rel × 0.2 × 0.0546 + 0.5 × v_rel²
Lower Extremity Criteria
Tibia Index (TI): F_z/F_zc + M_y/M_yc ≤ 1.0
Femur force ≤ 10,000 N (FMVSS 208)
Energy Management
Crush Zone Design
Total energy absorbed:
E_total = 0.5 × m × v² × η_transfer [η = fraction going to crush zone]
E_total = ∫ F_crush × dδ [area under force-displacement curve]
Mean crush force:
F_mean = E_total / δ_crush [design for F_mean × δ_crush = required energy]
Progressive folding (thin-wall tubes):
F_mean = 3.5 × σ_y × t^(5/3) × b^(1/3) [for square section; t = wall thickness; b = width]
σ_y = material yield strength; b = section width
Energy density (structural materials):
| Material | Specific energy [kJ/kg] |
|---|
| High-strength steel (DP780) | 10–15 |
| Aluminum 6061 | 8–12 |
| GFRP | 20–40 |
| CFRP | 40–80 |
Crash box (crush initiator):
Trigger mechanism (indentations, pre-crush) to initiate controlled folding
Fold wavelength: λ ≈ 0.67 × √(t × b)
Deceleration Pulse
Average deceleration:
ā = v² / (2δ_total) [δ_total = sum of all crush zones]
Target: ā < 30 g (occupant survivable for typical frontal crash)
Pulse shape:
Square pulse: minimizes occupant displacement for given deceleration
Triangular pulse: typical of vehicle crush; higher peak than square (equivalent ΔV)
Vehicle deceleration tolerance:
Limiting structural intrusion: Δ_intrusion ≤ 150 mm (footwell), ≤ 75 mm (firewall)
Occupant Kinematics
Occupant forward motion (relative to vehicle):
x_occ = ∫∫ a_vehicle dt² [during crash, before belt loading]
Typical: 100–150 mm forward before belt fully loaded
Seatbelt system:
Pretensioner: removes 50–75 mm slack at crash detection
Load limiter: caps belt force at 4–6 kN to limit chest loading
Airbag deployment: 10–20 ms after crash detection; fully inflated by 30 ms
Airbag interaction:
Occupant must be > 100 mm from airbag at deployment (out-of-position = injury risk)
Deployment speed: 280–320 km/h
FEA Methodology (LS-DYNA)
Model Setup
Element types: Belytschko-Tsay shell (BT, type 2) — default for crash; hourglass control
Element size: 5–10 mm for crashworthiness (coarser for full-vehicle BIW = 10 mm)
Time step:
Δt = 0.9 × L_min / (c × √3) [L_min = minimum element size; c = sound speed; factor 0.9 safety]
For steel, 5 mm element: Δt ≈ 1 μs → total crash at 100 ms → 10⁵ steps
Material models:
MAT_24 (Piecewise Linear Plasticity): most common for steel; input σ-ε curve up to fracture
MAT_58 (Laminated Composite Fabric): for FRP
Failure: DUCTILE failure with ε_f defined; elements deleted at failure (erosion)
Contact:
CONTACT_AUTOMATIC_SINGLE_SURFACE: general self-contact for sheet metal
CONTACT_TIED_SHELL_EDGE_TO_SURFACE: rigid welds
Friction coefficient: μ = 0.15–0.20 (steel-steel in crash)
Barrier Models
NCAP deformable barrier (AE-MDB): MAT_MODIFIED_HONEYCOMB material; EEVC standard
ODB (frontal): 40% overlap; mesh of barrier available from NHTSA/EuroNCAP
Correlation
Force-displacement: match test corridor ± 15% (corridor = ± 1 standard deviation of tests)
HIC: match within ± 5% of test average
Pulse: time to peak deceleration ± 3 ms
Standards
| Standard | Scope |
|---|
| FMVSS 208 | Frontal occupant crash protection |
| FMVSS 214 | Side impact protection |
| SAE J2980 | Crashworthiness evaluation |
| ECE R94 | Frontal impact (ECE regulation, 40% ODB) |
| ECE R95 | Lateral impact |
| ISO 13232 | Motorcycle rider protection |
Output
Provide: test type (FMVSS 208/EuroNCAP/IIHS), crash configuration (speed [km/h], barrier, overlap [%]), total energy absorbed E [kJ], mean crush force F_mean [kN], crush zone length δ [mm], deceleration pulse (peak [g], duration [ms]), HIC36 value vs. limit (700), chest compression [mm] vs. limit, Nij, intrusion [mm] vs. limit, material selection for crush zone (σ_y [MPa], specific energy [kJ/kg]), LS-DYNA element size [mm] and time step [μs], and applicable standard (FMVSS 208, ECE R94).