EV Battery Vibration and Crash Test Dummy
Whats/App: +86 156 1874 6768
Web: standard-groups.com
Application
This dummy is suitable for the following applications:
Vibration reliability testing of EV battery packs and modules
Safety assessment of batteries during collisions, drops, rollovers, or impact events
Battery protection testing inside vehicle cabins and occupant safety simulation
Seated human body dynamics simulation in laboratory experiments
R&D and life-cycle evaluation of EV and energy storage battery systems
Testing on battery vibration tables, crash platforms, and extreme acceleration setups
High-level safety labs for evaluating occupant protection devices (seat belts, airbags) in conjunction with battery seating simulations
Standards
The dummy complies with and supports testing according to the following standards:
GB/T 31467.3-2015 – Safety requirements for EV traction batteries
GB/T 31484-2015 – Collision safety requirements for EV traction batteries
GB/T 18384.1-2017 – Crash test dummy requirements for passenger vehicles
ISO 17025 – Laboratory quality management system standards (data collection and calibration)
FMVSS 208 – U.S. Federal Motor Vehicle Safety Standards, crash and occupant protection
UN ECE R100 – EV traction battery crash safety regulation
ASTM F1566 – Anthropomorphic test device testing methods
Parameters
| Parameter | Technical Specification | Notes |
|---|---|---|
| Dummy Type | Seated test dummy | Seated only, not standing |
| Sitting Height | 883.9 ± 5.1 mm | Compliant with Western seated anthropometry |
| Total Weight | 77.65 ± 1.18 kg (customizable to 100 kg ±1.18 kg) | Mass adjustable per bone segment to match 50th percentile adult male |
| Head | Aluminum skull | Includes lifting ring |
| Neck | Optional rubber joint | Supports vibration and impact damping |
| Upper / Lower Torso | Alloy skeleton | Joints with locking and damping mechanisms |
| Limbs | Thighs, lower legs, upper arms, lower arms, hands, feet | Aluminum alloy / steel skeleton |
| Joint Structures | Neck, shoulder, clavicle, rib, elbow, knee, ankle | Anti-loosening and anti-scattering design |
| Sensor Options | Optional | Accelerometers, six-axis force sensors, displacement sensors |
Features
Seated-specific design compatible with EV battery cabins and test platforms
Accurate joint locking and damping structures ensure stability during vibration and impact
Aluminum skull and alloy skeleton provide durability and reduce handling burden
Customizable total weight up to 100 kg for realistic adult mass distribution
Modular structure with optional sensors for dynamic data acquisition
Integrated lifting rings facilitate safe experimental handling
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