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首页> 外文期刊>Journal of power sources >Failure modes of valve-regulated lead-acid batteries for electric bicycle applications in deep discharge
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Failure modes of valve-regulated lead-acid batteries for electric bicycle applications in deep discharge

机译:用于电动自行车的阀控式铅酸蓄电池在深度放电中的失效模式

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摘要

The 36 or 48V valve-regulated lead-acid (VRLA) battery packs have been widely applied to the power sources of electric bicycles or light electric scooters in China. The failure modes of the l2V/10Ah VRLA batteries have been studied by the cycle life test at C_2 discharge rate and 100% depth of discharge (DOD). It indicates that the main cause of the battery failure in this cycle duty is the softening and shedding of positive active mass (PAM) rather than individual water loss, recombination efficiency or sulfation, etc. When the electrolyte saturation falls to a certain extent, the high oxygen recombination current leads to the depolarization of the negative plate and the shift of the positive plate to a higher potential. The violent oxygen evolution accelerates the softening of PAM and the end of cycle life.
机译:36V或48V阀控铅酸(VRLA)电池组已在中国广泛应用于电动自行车或轻型电动踏板车的电源。通过在C_2放电速率和100%放电深度(DOD)下的循环寿命测试研究了12V / 10Ah VRLA电池的失效模式。这表明此循环占空比中电池故障的主要原因是正极活性物质(PAM)的软化和脱落,而不是单个的水分损失,重组效率或硫酸盐化等。当电解质饱和度在一定程度上下降时,高的氧复合电流导致负极板去极化,并使正极板移向更高的电位。剧烈的氧气释放加速了PAM的软化并延长了循环寿命。

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