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锂电池智能制造装备标准体系研究 被引量:5

Research on the Standards System of Intelligent Manufacturing Equipment for Lithium Batteries
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摘要 本文概述了锂电池智能制造装备标准体系的国内外现状,分析了目前锂电池智能制造装备标准体系建立和维护过程中所遇到的困难及原因,结合锂电池制造工艺以及对系统集成方面的要求从浆料制备、极片制备、芯包制备、电芯装配、干燥注液、化成分容、电池PACK、检测设备、制造系统集成等九大方面提出了锂电池智能制造装备标准体系,并对锂电池智能制造装备标准体系在相关行业内的执行、推广与应用提出了建议,为今后锂电池智能制造装备标准体系的建设、维护、完善以及应用提供了新的思路和方向。 This paper introduces the status quo of the standards system of lithium battery intelligent manufacturing equipment at home and abroad, analyzes the difficulties and reasons encountered in the establishment and maintenance process of the current lithium battery intelligent manufacturing equipment standards system. The standards system of lithium battery intelligent manufacturing equipment is proposed combined with the requirements of lithium battery manufacturing technology and system integration in eight aspects from slurry preparation, electrode manufacturing, jelly roll manufacturing, cell assembly, dry and filling, formation and grading, battery pack, detection equipment and manufacturing system integration. Some suggestions are put forward for the implementation, promotion and application of lithium battery intelligent manufacturing equipment standards system in related industries, which provides new ideas and directions for the construction, maintenance, improvement and application of lithium battery intelligent manufacturing equipment standards system in the future.
作者 黄持伟 吴学科 阳如坤 刘阿密 HUANG Chi-wei;WU Xue-ke;YANG Ru-kun;LIU A-mi(Shenzhen Geesun Intelligent Technology Co.,Ltd.)
出处 《中国标准化》 2021年第7期57-62,93,共7页 China Standardization
基金 国家重点研发计划项目(项目编号:2016YFB0100300)资助
关键词 锂电池 制造装备 标准体系 系统集成 lithium battery manufacturing equipment standards system system integration
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  • 1施志聪,杨勇.聚阴离子型锂离子电池正极材料研究进展[J].化学进展,2005,17(4):604-613. 被引量:66
  • 2安平,王剑.锂离子电池在国防军事领域的应用[J].新材料产业,2006(9):34-40. 被引量:18
  • 3刘彦龙.中国锂离子电池产业发展现状[J].电池世界,2012(9):34.
  • 4Padhi A K,Nanjundaseamy K S,Goodenough J B.Phospho-olivnes as positive electrode materials for rechargeable lithium batteries[J].Journal of the Electrochemical Society,1997,144(4):1188-1194.
  • 5Nanjundaseamy K S,Padhi A K,Goodenough J B,et al.Synthesis redox potential evaluation and electrochemical characteristic of NASICON-related-3D framework compounds[J].Solid State Ionics,1996,92(1-2):1-10.
  • 6Thomas M G,Bruce P G,Goodenough J B.Lithium mobility in the layered oxide Li1-xCoO2[J].Solid State Ionics,1985,1(1):13-19.
  • 7Jang Y I,Chiang Y M.Stability of the monoclinic and orthorhomhic,phases of LiMnO2 with temperature,oxygen partial ressure,and A1 doping[J].Solid State Ionics,2000,130(1):53-59.
  • 8Storey C,Kargina I,Grincourt Y,et al.Electrochemical characterization of a new high capacity cathode[J].Journal of Power Sources,2001,97-98:541-544.
  • 9Armstrong A R,Robertson A D,Bruce P G.Structural transformation on cycling layered Li (Mn1-y Coy)O2 cathode materials[J].Electrochimica Acta,1999,45(1-2):285-294.
  • 10Jiang J B,Du K,Cao Y B,etal.Synthesis of spherical LiMn2O4 with Mn3O4 and its electrochemistry performance[J].Journal of Alloys and Compounds,2013,577(1):138-142.

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