The role of insulation layer design and heat exchange capacity in equipment in the new energy industry

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The test chamber is constructed using environmentally friendly polyurethane foam and ultra-fine glass fiber, with a thickness ≥100mm or ≥150mm. This design provides explosion resistance, preventing deformation of the inner chamber due to uncontrolled battery charging and discharging.

 

In the event of uncontrolled combustion during battery testing, the inner chamber temperature can instantly rise above 500 degrees Celsius. In this situation, the 50mm thick rock wool provides significant protection, achieving a Class A fire retardant rating. This prevents spontaneous combustion of the test chamber in the event of a fire or explosion during abnormal battery testing.

The test chamber is constructed using environmentally friendly polyurethane foam and ultra-fine glass fiber, with a thickness ≥100mm or ≥150mm. This design provides explosion resistance, preventing deformation of the inner chamber due to uncontrolled battery charging and discharging.

 

In the event of uncontrolled combustion during battery testing, the inner chamber temperature can instantly rise above 500 degrees Celsius. In this situation, the 50mm thick rock wool provides significant protection, achieving a Class A fire retardant rating. This prevents spontaneous combustion of the test chamber in the event of a fire or explosion during abnormal battery testing.