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首页> 外文期刊>Drying technology: An International Journal >Delamination behavior of lithium-ion battery anodes: Influence of drying temperature during electrode processing
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Delamination behavior of lithium-ion battery anodes: Influence of drying temperature during electrode processing

机译:锂离子电池负极的分层行为:电极处理过程中干燥温度的影响

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One essential process step during electrode processing for lithium-ion batteries is the drying of the wet particulate electrode coating. The electrode film solidifies during evaporation of the solvent and a porous film is formed. In this study, we focus on the influence of drying temperature on the internal electrode structure of the dry film. Anode slurries that consist of graphite and an aqueous binder system were coated and subsequently dried. To assure defined and controllable drying conditions, a laboratory set-up with a temperature-controlled substrate carrier and an impingement dryer was used. To facilitate a scale-up to continuously passed dryers, the choice of experimental temperatures was based on a calculation of steady-state temperatures that result from gas temperatures that are commonly applied in industrial drying processes. The delamination behavior of the differently dried electrodes was investigated by means of a 90 degrees peel test. The results show a strong dependency of electrode adhesion on drying temperature. A lower adhesion force at higher temperatures hints at a variation in binder content at the interface between the copper substrate and the coating layer. The formation of a consolidation layer at the air-film interface during drying is identified as a possible explanation and a criterion for consolidation layer formation is suggested.
机译:锂离子电池电极加工过程中的一个基本加工步骤是干燥湿颗粒电极涂层。电极膜在溶剂蒸发期间固化并且形成多孔膜。在这项研究中,我们关注干燥温度对干膜内部电极结构的影响。涂覆由石墨和水性粘合剂体系组成的阳极浆料,然后干燥。为了确保定义的和可控制的干燥条件,使用了具有温度控制的基材载体和冲击式干燥机的实验室装置。为了促进按比例扩大到连续通过的干燥机,实验温度的选择是基于稳态温度的计算得出的,该稳态温度是由工业干燥过程中通常使用的气体温度得出的。通过90度剥离试验研究了不同干燥的电极的分层行为。结果表明电极粘附力对干燥温度有很强的依赖性。在较高温度下较低的粘附力暗示在铜基材和涂层之间的界面处的粘合剂含量变化。干燥期间在气膜界面处形成固结层被认为是可能的解释,并提出了固结层形成的标准。

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