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ULTRASONIC WELDING SIMULATIONS OF MULTIPLE, THIN AND DISSIMILAR METALS FOR BATTERY JOINING

机译:电池加入多重,薄型和不同金属的超声波焊接模拟

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Ultrasonic welding is a solid-state bond created using ultrasonic energy. It has been used in the semiconductor industry for several decades, and more recently, in the automotive industry such as for battery welding. Even though there existed several numerical simulations on ultrasonic welding, the models were too simplistic, in both theory and welding configuration, to present the multiple sheet, dissimilar metal ultrasonic welding. In this study, theories and a finite element procedure for the ultrasonic welding process are developed. The procedure invokes both Abaqus/Standard and Abaqus/Explicit to simulate the mechanical-thermal coupled phenomena over the entire weld duration with moderate computational cost. The procedure is verified and used to simulate selected specific cases involving multiple sheets and dissimilar materials, i.e., copper and aluminum. The simulation procedure demonstrates its capability to predict welding energy and temperature distribution of the workpieces, towards the goal of improving welding quality.
机译:超声波焊接是使用超声能量产生的固态键。它已在半导体行业使用数十年,更近几十年来,在汽车行业,如电池焊接。尽管在超声波焊接上存在若干数值模拟,但在理论和焊接配置中,模型太简单了,以呈现多片,不同的金属超声波焊接。在本研究中,开发了超声波焊接过程的理论和有限元件。该程序调用ABAQUS /标准和ABAQUS /明确以通过中等计算成本在整个焊接持续时间内模拟机械热耦合现象。验证程序并用于模拟涉及多个纸张和异种材料的所选特定案例,即铜和铝。仿真程序证明其能够预测工件的焊接能量和温度分布,以实现改善焊接质量的目标。

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