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CHARACTERIZATION OF JOINT QUALITY IN ULTRASONIC WELDING OF BATTERY TABS

机译:电池外超声波焊接中的关节质量的特征

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摘要

Manufacturing of lithium-ion battery packs for electric or hybrid electric vehicles requires a significant amount of joining such as welding to meet desired power and capacity needs. However, conventional fusion welding processes such as resistance spot welding and laser welding face difficulties in joining multiple sheets of highly conductive, dissimilar materials with large weld areas. Ultrasonic metal welding overcomes these difficulties by using its inherent advantages derived from its solid-state process characteristics. Although ultrasonic metal welding is well-qualified for battery manufacturing, there is a lack of scientific quality guidelines for implementing ultrasonic welding in volume production. In order to establish such quality guidelines, this paper first identifies a number of critical weld attributes that determine the quality of welds by experimentally characterizing the weld formation over time. Samples of different weld quality were cross-sectioned and characterized with optical microscopy, scanning electronic microscopy (SEM), and hardness measurements in order to identify the relationship between physical weld attributes and weld performance. A novel microstructural classification method for the weld region of an ultrasonic metal weld is introduced to complete the weld quality characterization. The methodology provided in this paper links process parameters to weld performance through physical weld attributes.
机译:用于电动或混合动力电动车辆的锂离子电池组的制造需要大量的连接,例如焊接以满足所需的功率和容量需求。然而,传统的熔接焊接工艺,例如电阻点焊和激光焊接面部难以加入具有大焊接区域的多片高导电,不同的材料的困难。超声波金属焊接通过使用固态过程特性的固有优点来克服了这些困难。虽然超声波金属焊接适用于电池制造,但缺乏在体积生产中实现超声波焊接的科学质量指导。为了建立这样的质量指导,本文首先识别了许多临界焊缝属性,通过实验表征焊接随时间的实验表征焊缝质量。不同的焊接质量的样品的横切片并表征光学显微镜,扫描电子显微镜(SEM),和硬度测量,以识别物理焊接属性和焊接性能之间的关系。引入了超声波金属焊缝焊接区域的新型微观结构分类方法,以完成焊接质量表征。本文提供的方法,通过物理焊接属性链接过程参数以焊接性能。

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