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红外干燥条件下水基锂电池正极涂层黏结剂分布
引用本文:贝心志,李徐佳,吴显峰.红外干燥条件下水基锂电池正极涂层黏结剂分布[J].科学技术与工程,2021,21(16):6725-6731.
作者姓名:贝心志  李徐佳  吴显峰
作者单位:燕山大学车辆与能源学院,秦皇岛066004
基金项目:河北省自然科学基金( E2017203221) 、河北省高等学校科学技术研究重点项目(ZD2020169)
摘    要:为探究迁移控制干燥动力学理论在红外辐射干燥条件下的适用性,在红外辐射条件下对水基锂电池正极涂层进行了干燥,应用迁移控制干燥动力学理论对极片内部黏结剂分布规律进行了分析,通过热重分析仪(thermogravimetric analyzer,TGA)对理论分析进行了检验,并使用透反偏光显微镜观察了极片涂层的上、下表面形态,应用百格刀对比了不同干燥条件下极片的力学性能.结果表明:黏结剂分布的理论计算结果与TGA实验数据及显微镜观察结果吻合,说明红外干燥条件下极片内部黏结剂分布符合迁移控制干燥动力学理论,在水分迁移的带动下涂层中黏结剂含量随着距离基材距离的增大而增大.同时,结合力学性能结果和干燥能耗水平显示,在辐射功率为200 W,辐射距离为13 cm时干极片具有较好的力学性能和经济效益.

关 键 词:红外辐射  锂电池  正极涂层  干燥  黏结剂分布
收稿时间:2020/12/15 0:00:00
修稿时间:2021/3/31 0:00:00

Distribution of binder for cathode coating of water-based lithium-ion battery under the condition of infrared drying
Bei Xinzhi,Li Xuji,Wu Xianfeng.Distribution of binder for cathode coating of water-based lithium-ion battery under the condition of infrared drying[J].Science Technology and Engineering,2021,21(16):6725-6731.
Authors:Bei Xinzhi  Li Xuji  Wu Xianfeng
Institution:College of Vehicles and Energy,Yanshan University
Abstract:In order to explore the applicability of migration control drying kinetics theory in the condition of infrared radiation drying, the positive electrode coating of water-based lithium battery was dried under the condition of infrared radiation. The distribution of binder inside the electrode sheet was analyzed by using the migration control drying kinetics theory. The theoretical analysis was verified by TGA comprehensive thermal analyzer. The results show that the theoretical calculation results of binder distribution are consistent with the experimental data of Tga and the observation results of microscope, indicating that the distribution of binder in the electrode sheet conforms to the theory of migration control drying kinetics under the condition of infrared drying. Drived by water migration, the content of binder in the coating increases with the increase of the distance from the substrate. At the same time, combining with the results of mechanical properties and drying energy consumption level, the dry electrode plate has better mechanical properties and economic benefits when the radiation power is 200W and the radiation distance is 13cm.
Keywords:infrared radiation  lithium-ion battery  cathode coating  drying  binder distribution
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