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The Battery Short Circuit Tester is essential for evaluating safety risks in lithium-ion batteries by simulating accidental short circuits. This guide covers key testing protocols and standards compliance.
**Testing Standards**
- **IEC 62619**: Requires external resistance of 30 mΩ ± 10 mΩ for 6 hours or until temperature stabilizes.
- **GB 38031**: Mandates ≤5 mΩ conductors for 10-minute cell tests or 1-hour system tests.
- **UL 2580**: Uses 20 mΩ resistance with 7-hour test duration.
**Test Procedure**
1. **Setup**:
- Connect battery terminals to a low-resistance load (e.g., 5 mΩ for UN38.3 compliance).
- Monitor voltage, current, and surface temperature (IR camera recommended).
2. **Execution**:
- Trigger short circuit and record:
* Peak current (up to 24 kA for high-capacity EV batteries).
* Temperature rise rate (critical for thermal runaway prevention).
3. **Termination Criteria**:
- Stop if voltage drops <10% of nominal or temperature exceeds 150°C.
**Key Metrics**
- **Pass/Fail Thresholds**:
- No fire/explosion within 1 hour (UN38.3).
- Post-test voltage recovery >90% indicates stable internal resistance.
**Applications**
- **EV Batteries**: Validates crash safety per GB/T 35590.
- **Energy Storage**: IEC 63056 compliance for grid-scale systems.
**Note**: Always conduct tests in explosion-proof chambers with gas sensors.
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