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首页> 外文期刊>Journal of Manufacturing Processes >The effect of horn knurl geometry on battery tab ultrasonic welding quality: 2D finite element simulations
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The effect of horn knurl geometry on battery tab ultrasonic welding quality: 2D finite element simulations

机译:牛角滚花几何形状对电池接线片超声焊接质量的影响:二维有限元模拟

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摘要

Ultrasonic welding has become a major joining technique in battery and battery electric vehicles. Even though there have been several numerical analyses, simulations of ultrasonic welding for multiple sheets and dissimilar metals with the actual tool geometry (such as the knurl pattern of the horn, or horn) have not been reported. In this study, finite element procedures for the ultrasonic welding process are developed using 2D plain-strain elements. The procedure focuses on simulating localized deformation behavior of battery tab welding for different knurl geometries with very affordable computations. The procedure has been validated, and the results provide guidelines for designing the horn knurl geometry to improve the weld quality. The research provides scientific understanding and guidelines for improving ultrasonic weld quality of battery packs. (C) 2017 The Society of Manufacturing Engineers. Published by Elsevier Ltd. All rights reserved.
机译:超声波焊接已成为电池和电池电动汽车中的主要连接技术。即使进行了数种数值分析,也没有报道对具有实际工具几何形状(例如,焊头或焊头的滚花图案)的多张板材和异种金属进行超声焊接的模拟​​。在这项研究中,使用2D平面应变元件开发了用于超声焊接过程的有限元程序。该过程着重于通过非常经济的计算来模拟不同突节几何形状的电池凸片焊接的局部变形行为。该程序已经过验证,结果为设计喇叭滚花几何形状以提高焊接质量提供了指导。该研究为提高电池组的超声波焊接质量提供了科学的理解和指导。 (C)2017年制造工程师学会。由Elsevier Ltd.出版。保留所有权利。

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