基于过程数据监测的高频利兹丝超声压接工艺优化

J. Seefried, E. B. Schwarz, Fabian Bleier, J. Franke, J. Bergmann, A. Kühl
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引用次数: 0

摘要

从技术的角度来看,绝缘导线与接触元件的接触过程是机电工程中最复杂的步骤之一。为了建立绕组端和接触元件的电气和机械连接,通常在实际接触过程之前将导线剥离。然而,对于由数千条绝缘单线组成的高频利兹线,不能提前进行剥离过程。因此,使用热压接或超声波压接等工艺,在压接过程中热去除绝缘。后者的特点是与热压接工艺相比,工艺能耗显著降低。因此,它对未来的应用最有吸引力,但在文献中几乎没有提到过程优化策略。在本出版物的范围内,通过系统的工艺数据分析,研究了几种优化超声压接工艺的可能性。在此分析中,考虑了来自控制系统的直接可用数据,如所需的过程能量,以及额外获得的传感器数据,如声纳电极振荡,并进行了过程控制变量的变化以及电缆耳夹紧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of the Ultrasonic Crimping Process of High-Frequency Litz Wires by Using Process Data Monitoring
From a technological point of view, the contacting process of insulated wires to contact elements is one of the most complex steps in electromechanical engineering. To establish an electrical and mechanical connection of winding ends and contact elements, commonly the wire is stripped before the actual contacting process. However, for high-frequency litz wires, consisting of up to several thousand insulated single wires, the stripping process cannot be carried out in advance. Therefore, processes such as hot crimping or ultrasonic crimping, in which the insulation is thermally removed during the crimping process, are used. The latter is characterized by a significantly lower process energy consumption compared to the hot crimping process. It is therefore most attractive for future applications, but process optimization strategies have hardly been addressed in the literature. Within the scope of this publication, several possibilities of optimizing the process of ultrasonic crimping are investigated by means of systematic process data analysis. For this analysis, directly available data from the control system like the required process energy as well as additionally acquired sensor data, such as the sonotrode oscillation, are taken into account and a variation of process control variables as well as the cable lug clamping is conducted.
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