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Multi-Electrode Resistivity Probe for Investigation of Local Temperature Inside Metal Shell Battery Cells via Resistivity: Experiments and Evaluation of Electrical Resistance Tomography

机译:通过电阻率研究金属壳电池内部温度的多电极电阻率探头:电阻层析成像的实验和评估

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Direct Current (DC) electrical resistivity is a material property that is sensitive to temperature changes. In this paper, the relationship between resistivity and local temperature inside steel shell battery cells (two commercial 10 Ah and 4.5 Ah lithium-ion cells) is innovatively studied by Electrical Resistance Tomography (ERT). The Schlumberger configuration in ERT is applied to divide the cell body into several blocks distributed in different levels, where the apparent resistivities are measured by multi-electrode surface probes. The investigated temperature ranges from −20 to 80 °C. Experimental results have shown that the resistivities mainly depend on temperature changes in each block of the two cells used and the function of the resistivity and temperature can be fitted to the ERT-measurement results in the logistical-plot. Subsequently, the dependence of resistivity on the state of charge (SOC) is investigated, and the SOC range of 70%–100% has a remarkable impact on the resistivity at low temperatures. The proposed approach under a thermal cool down regime is demonstrated to monitor the local transient temperature.
机译:直流(DC)电阻率是一种对温度变化敏感的材料特性。本文通过电阻层析成像(ERT)创新地研究了钢壳电池(两个商用10 Ah和4.5 Ah锂离子电池)内部电阻率与局部温度之间的关系。 ERT中的Schlumberger配置用于将电池主体分成分布在不同水平的几个块,其中视电阻率通过多电极表面探针测量。研究的温度范围为-20至80°C。实验结果表明,电阻率主要取决于所使用的两个单元的每个块中的温度变化,并且电阻率和温度的函数可以拟合到逻辑图的ERT测量结果中。随后,研究了电阻率对电荷状态(SOC)的依赖性,SOC范围为70%–100%对低温下的电阻率有显着影响。所提出的方法在热冷却条件下被证明可以监测局部瞬态温度。

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