Battery Pack Thermal Shock Heat Abuse Testing Chamber Lithium Impact Runaway Test
Relevant Standard Test Requirements:
Meets the standards: IEC 62133-2012, UL 1642, UN 38.3 and GB 31241-2014.
Standard Heat Abuse Procedure: After the battery is fully charged, place it into the test chamber. The heating rate increases at (5±2)ºC/min. Once the temperature reaches 130ºC ±2ºC, it is maintained for 30 minutes. The battery must not catch fire or explode.
| Model | MBS-RC125 | MBS-RC216 | MBS-RC512 | MBS-RC1000 |
|---|---|---|---|---|
| Inner Size (W*H*D) mm | 500*500*500 | 600*600*600 | 800*800*800 | 1000*1000*1000 |
| Outer Size (W*H*D) mm | 700*1250*600 | 820*1380*800 | 1020*1580*1000 | 1250*1800*1150 |
| Temperature Range | RT ºC to 150ºC | |||
| Uniformity / Fluctuation | ≤1ºC / ±0.5ºC | |||
| Heating Rate | +RTºC to +150ºC (approx. 5ºC/min ±2ºC) | |||
| Inner Material | SUS 304 Mirror Stainless Steel | |||
| Observation Window | 350*350mm (20mm Explosion-proof glass) | |||
| Safety Features | Explosion-proof pressure relief device, smoke exhaust device | |||
Note: Custom dimensions are available to align with your specific operational needs.
1Explosion-proof Relief Port: Prevents box deformation or door detachment by releasing pressure if a battery explodes.
2Reinforced Safety: Box doors include explosion-proof chains, and glass windows are equipped with explosion-proof grilles.
3Teflon Insulation: Inner box and racks are treated with Teflon to prevent short-circuiting between battery electrodes and the chamber walls.
Hardware Excellence
Utilizing high-precision punching systems and Argon welding. The shell is made from premium galvanized steel with electrostatic powder spray finish for long-term durability. The inner chamber features SUS #304 stainless steel with full argon arc welding to prevent leakage.
Advanced Refrigeration
Features 3D-optimized refrigeration management with frequency conversion technology. This innovation allows cooling output to align perfectly with real-time test chamber loads, optimizing energy efficiency by up to 30%.
Energy Saving Technology
Harnesses advanced PID and PWM-driven VRF technology with electronic expansion valves. This system dynamically adjusts refrigeration capacity, eliminating the need for auxiliary heating and ensuring high stability.





