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锂离子电池在不同放电速率和工作温度下恒流放电测试的实验数据。

Experimental data of lithium-ion batteries under galvanostatic discharge tests at different rates and temperatures of operation.

作者信息

Catenaro Edoardo, Onori Simona

机构信息

Department of Energy Resource Engineering, Stanford University, 367 Panama St, Stanford, CA 94305, United States.

出版信息

Data Brief. 2021 Feb 24;35:106894. doi: 10.1016/j.dib.2021.106894. eCollection 2021 Apr.

Abstract

In this paper, we report data from lithium battery cells from: Panasonic NCR-18650B (3350 mAh), LG Chem INR21700-M50 (4850 mAh) and A123 Systems ANR26650m1-B (2500 mAh). They own the same anode composition, graphite-based, and different cathode chemistry: lithium-nickel-cobalt aluminum-oxide (NCA), lithium-nickel-manganese-cobalt-oxide (NMC) and lithium-iron-phosphate (LFP), respectively. In this study, six cell samples were tested for each chemistry. The experiments consist in fully discharging the cells from 100% state-of-charge until the cell cutoff discharge voltage. The discharge is performed under controlled temperature conditions, namely 5 °C, 25 °C and 35 °C, and subjecting the battery cells to galvanostatic discharge rates ranging from C/20 to 5C, for NCA and NMC, and from C/20 to 20C, for LFP chemistry. The IncuMax IC-500R thermal chamber provides the reference temperature to the cell. The input current profiles are configured via the MITS Pro-software, and transmitted through the TCP/IP connection to the Arbin measurement system and the Arbin LBT21024. Voltage, current and cell surface temperature are measured on each cell and for each experiment to characterize the cells in terms of discharge capacity, discharge efficiency, thermal robustness, specific energy and specific power. A comprehensive analysis of the data is found in [1].

摘要

在本文中,我们报告了来自以下锂电池的相关数据:松下NCR-18650B(3350毫安时)、LG化学INR21700-M50(4850毫安时)和A123系统ANR26650m1-B(2500毫安时)。它们具有相同的阳极组成,均为石墨基,而阴极化学组成不同,分别为锂镍钴铝氧化物(NCA)、锂镍锰钴氧化物(NMC)和磷酸铁锂(LFP)。在本研究中,每种化学组成测试了六个电池样本。实验包括将电池从100%充电状态完全放电至电池截止放电电压。放电在受控温度条件下进行,即5℃、25℃和35℃,并且使电池以恒流放电率进行放电,对于NCA和NMC化学组成,放电率范围为C/20至5C,对于LFP化学组成,放电率范围为C/20至20C。IncuMax IC-500R热室为电池提供参考温度。输入电流曲线通过MITS Pro软件进行配置,并通过TCP/IP连接传输到Arbin测量系统和Arbin LBT21024。在每个电池上以及每次实验中测量电压、电流和电池表面温度,以便根据放电容量、放电效率、热稳定性、比能量和比功率对电池进行表征。数据的全面分析见[1]。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0af3/7941039/38b1bd5c04fa/gr1.jpg

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