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Throughput analysis and simulation-based improvement of baked varnish stacking for automotive electric drives

机译:汽车电动驱动器烘焙清漆堆积吞吐量分析与仿真改进

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A critical part in the process chain of manufacturing electric drives is the production of laminated stacks. Due to their excellent isolating characteristics, electrical sheets that are coated with baked varnish are often considered to be electric benchmarks. Besides a pure loss evaluation of the laminated stacks, a cost reduction of the overall system should also be aimed for. This paper deals with the optimization of a real production line and focuses on the process chain: stamping with subsequent baking of single-tooth stator stacks for automotive application. The main focus of the improvement potential lies on the baking process, including the necessary pre- and post-processing. In order to optimize the existing line, the simulation software Tecnomatix Plant Simulation was used. Through bottleneck analyses of the modeled system, targeted improvements were derived to achieve a significant increase of the output. Those simulation studies enable virtual adjustments to the running system and a quantification of the expected effects. In the context of a real example, quantitative improvement potentials are presented and the limitations of the process chain baked varnish stacking are shown.
机译:制造电动驱动器的过程链中的关键部分是制造层压叠层。由于它们出色的隔离特性,涂有烘焙清漆的电气板通常被认为是电动基准。除了层压叠层的纯损耗评估外,还应该针对整体系统的成本降低。本文涉及实际生产线的优化,并专注于过程链:用随后的单齿定子堆烘烤进行机械应用。改善潜力的主要重点在于烘焙过程,包括必要的预处理。为了优化现有线路,使用了模拟软件Tecnomatix工厂仿真。通过建模系统的瓶颈分析,得出了有针对性的改进,以实现产量的显着增加。这些仿真研究能够对运行系统进行虚拟调整和预期效果的量化。在实例的上下文中,示出了定量改进电位,并且示出了过程链烘焙清漆堆叠的限制。

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