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Modelling and characterisation of ultrasonic joints for Li-ion batteries to evaluate the impact on electrical resistance and temperature raise

机译:锂离子电池超声接头的建模和表征,以评估对电阻和温度升高的影响

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摘要

In automotive and stationary Li-ion battery packs, a large number of individual cells, typically hundreds to thousands of cells, are electrically connected to achieve pack specification. These large number of interconnections are mainly achieved by welding cell tab to bus-bar using a welding technique of choice. Ultrasonic metal welding (UMW) is one of the common joining technique employed to join pouch cell's tabs to bus-bar. Although commonly employed, there is little research currently exist in literature reporting the joint characteristics in terms of electrical resistance and temperature raise due to charge-discharge current. Li-ion batteries reaching sub-milliohm internal resistance, risks the temperature raise at the joint could be even higher than the cell itself which raise a serious safety concern and they are to be addressed. This research investigates the electrical and thermal characteristics of ultrasonic joints of 0.3 mm aluminiumickel coated copper tabs to 1.0 mm copper bus-bar. This article reports the dynamic behaviour of electrical resistance and corresponding temperature increase as a result of current flow. To capture the electrical and thermal behaviour of the joint, a numerical model has been developed and validated with experimental results, which can be employed to analyse battery pack performance.
机译:在汽车和固定式锂离子电池组中,电连接大量单个电池(通常是数百到数千个电池)以达到电池组规格。这些大量的互连主要是通过使用所选的焊接技术将电池接线片焊接到母线来实现的。超声波金属焊接(UMW)是将袋式电池的凸耳连接到母线的常用连接技术之一。尽管被普遍采用,但是目前在文献中很少有研究报道由于充放电电流引起的电阻和温度升高方面的联合特性。锂离子电池达到内兆欧以下的电阻,可能会导致接头处的温度升高甚至高于电池本身,这会引​​起严重的安全隐患,需要加以解决。这项研究调查了0.3毫米铝/镍涂层铜接线片与1.0毫米铜汇流排的超声接头的电学和热学特性。本文报告了电流引起的电阻的动态行为以及相应的温度升高。为了捕获接头的电气和热行为,已经开发了一个数值模型并通过实验结果进行了验证,该模型可以用于分析电池组的性能。

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