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contributor authorLiu, Shiqiang
contributor authorMa, Tianyi
contributor authorWang, Fang
contributor authorBai, Guangli
contributor authorWei, Zhen
contributor authorWei, Mohan
contributor authorLi, Yupeng
contributor authorLin, Chunjing
contributor authorHu, Jian
contributor authorHao, Weijian
date accessioned2022-05-08T09:32:26Z
date available2022-05-08T09:32:26Z
date copyright10/20/2021 12:00:00 AM
date issued2021
identifier issn2381-6872
identifier otherjeecs_19_2_021013.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4285257
description abstractLithium-ion traction batteries are increasingly used in transportation, such as electric vehicles and buses. To reduce the life cycle cost of traction batteries, material recycling is a technical route that must be considered. Deep discharge is one of the necessary steps in battery disassembly and material recycle
description abstracthowever, the thermal stability and internal material changes caused by deep discharge can affect the subsequent recycling processes. In this paper, we study the influence of deep-discharge rate on the recycling process of a commercial traction battery with LiNi1/3Co1/3Mn1/3O2 cathode and a graphite anode. Combine with multi-analysis methods, we systematically explored the evolution of an electrode structure under different deep-discharge current densities. Our results show that the deep-discharge current density has different effects on the internal structure of the battery and may affect its thermal safety.
publisherThe American Society of Mechanical Engineers (ASME)
titleInfluence of Deep-Discharge Rate on Recycle Process of High Energy Density Traction Batteries
typeJournal Paper
journal volume19
journal issue2
journal titleJournal of Electrochemical Energy Conversion and Storage
identifier doi10.1115/1.4052628
journal fristpage21013-1
journal lastpage21013-7
page7
treeJournal of Electrochemical Energy Conversion and Storage:;2021:;volume( 019 ):;issue: 002
contenttypeFulltext


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