2023
DOI: 10.3390/batteries9070378
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Experimental Investigation on the Thermal Management for Lithium-Ion Batteries Based on the Novel Flame Retardant Composite Phase Change Materials

Abstract: Thermal management systems are critical to the maintenance of lithium-ion battery performance in new energy vehicles. While phase change materials are frequently employed in battery thermal management systems, it’s important to address the concerns related to their leakage and flammability, as they can pose hazards to the safety performance of batteries. This paper proposes a novel flame retardant composite phase change material (CPCM) consisting of paraffin, high-density polyethylene, expanded graphite, ammon… Show more

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Cited by 8 publications
(1 citation statement)
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“…The work yielded less than 1% of the leakage rate of the flame retardant CPCMs obtained and good thermal management efficiency. For a 3C discharge rate, the results indicated a 30.31% and 29.53% reduction, respectively in T max and Δ T 215 …”
Section: Recent Research Work On Mitigation Of Thermal Runaway Propag...mentioning
confidence: 94%
“…The work yielded less than 1% of the leakage rate of the flame retardant CPCMs obtained and good thermal management efficiency. For a 3C discharge rate, the results indicated a 30.31% and 29.53% reduction, respectively in T max and Δ T 215 …”
Section: Recent Research Work On Mitigation Of Thermal Runaway Propag...mentioning
confidence: 94%