蒸汽加热锂电池底部接触式真空干燥设备设计

Design of Bottom Contact Vacuum Drying Equipment for Lithium Batteries based on Steam Heating

  • 摘要: 随着新能源锂电池业的蓬勃发展和产业化的不断推进,有效降低锂电池干燥工序的能耗,为企业降本尤为重要。针对此,该文设计一款以蒸汽为热源的锂电池真空干燥设备,用以替代传统电加热板、电加热管式加热装置。该设备依托蒸汽与水换热,经由热水加热层板,再对电芯完成逐级热传导升温;同时利用真空泵对电芯作业环境抽真空,降低水分沸点,高效快速脱除电芯内部水分。文章完成了设备加热系统设计、真空系统选型,并开展烘烤效果与能耗对比试验。测试结果表明,该设备可使干燥工序能耗成本降低47.5%,充分验证了设备运行稳定、实用可行,可为行业提供新型节能解决方案,蒸汽加热技术在锂电池生产领域具备良好的推广应用前景。

     

    Abstract: With the vigorous development and continuous industrialization of the new energy lithium battery industry, it is particularly important to effectively reduce the energy consumption of the lithium battery drying process and cut costs for enterprises. In view of this, this study designs a vacuum drying device that adopts steam as heat source to replace traditional electric heating plates and heating tubes for lithium battery heating. The device realizes heat exchange between steam and water, and heats layer plates as well as battery cells via heat conduction. A vacuum pump is used to evacuate the working environment of battery cells to lower the boiling point of water, so as to rapidly and efficiently remove internal moisture from battery cells. This paper mainly completes the heating system design, vacuum system selection, baking effect test and energy consumption test of the equipment. The results show that the equipment can reduce the energy consumption cost of this process by 47.5%, which verifies its good feasibility and operational stability and provides an innovative solution for the industry. Furthermore, steam heating technology has broad application prospects in lithium battery manufacturing.

     

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