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Cost modeling of lithium-ion battery cells for automotive applications

机译:汽车应用锂离子电池的成本建模

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摘要

The purpose of this study was to highlight the technical and economic issues arising in lithium-ion cells for automotive applications, and to indicate some potential solutions to lower the cost. This topic has already been the subject of some studies, but, although of primary importance, the role on cost of a cell design parameter, the electrode coating thickness, has rarely been described. This study intends to explore particularly the influence of this parameter. To do so, the cost of cells with four positive electrode materials (NMC, NCA, LFP, and LMO), and the same negative electrode material are compared at several electrode thickness. The cost of these cells is computed using an innovative model and varies between 230 and 400 $ per kWh. With the assumptions used, it appears that the potential savings resulting from doubling the electrode coating thickness from 50 to 100 lm at a given porosity represent roughly 25% of the cell cost. The electrode coating thickness emerges as an essential parameter for an unbiased cells cost comparison. This article gives a view ofof the current lithium-ion cells costs, and provides guidelines to lower cells cost.
机译:这项研究的目的是强调汽车用锂离子电池中出现的技术和经济问题,并指出一些降低成本的潜在解决方案。该主题已经成为一些研究的主题,但是,尽管最重要的是,很少描述电池设计参数,电极涂层厚度对成本的影响。本研究旨在特别探索该参数的影响。为此,在几种电极厚度下,比较了具有四种正极材料(NMC,NCA,LFP和LMO)以及相同负极材料的电池成本。这些电池的成本是使用创新模型计算得出的,每千瓦时的成本在230至400美元之间。根据所使用的假设,在给定的孔隙率下,将电极涂层的厚度从50 lm翻倍到100 lm似乎可以节省大约25%的电池成本。电极涂层的厚度成为无偏电池成本比较的基本参数。本文概述了当前锂离子电池的成本,并提供了降低电池成本的指南。

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