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Ex-Ante Process-FMEA for Hairpin Stator Production by Early Prototypical Production Concepts

机译:EX-Ante Process-FMEA用于发夹定子的早期原型生产概念

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The worldwide demand for electric vehicles is on the rise and production capacities for electric powertrains need to keep pace with this development. The innovative hairpin stator technology, in which solid copper bars are used instead of flexible round wire for coil production, promises valuable unique selling points on both the product and process side, but also confronts automotive manufacturers and plant manufacturers with major challenges. Due to the cost-intensive and only slightly variant flexible production lines, the optimum product and process concepts must be developed and defined at an early stage. The key for industrialization of hairpin stators is an effective process development and technology selection, especially for the necessary bending and contacting technologies. To systematically break down the technological challenges of process development, a process failure mode and effects analysis (FMEA) is used in this paper with the aim of a scalable, ramp-up-optimized and economical production line. Therefore, the FMEA-method is applied to the partially unknown process technologies of hairpin stators through the investigation of results from early prototypical production concepts especially for the necessary bending and contacting technologies. The analysis lists processes with possibly insufficient process capabilities due to process interdependencies that have been derived using early production prototypes for hairpin stators. In conclusion, this paper presents a method that applies the FMEA-method to early prototypical production concepts of hairpin stators and makes it possible to integrate the results into the final process development and technology selection.
机译:全球对电动汽车的需求正在上升和生产能力,需要保持这种发展。创新的发夹定子技术,其中使用固体铜棒代替柔性圆线用于线圈生产,在产品和过程方面都有宝贵的独特销售点,而且还面临着具有主要挑战的汽车制造商和植物制造商。由于成本密集型且仅略微变体柔性生产线,必须在早期阶段开发和定义最佳产品和工艺概念。发夹统治的工业化的关键是有效的过程开发和技术选择,特别是对于必要的弯曲和联系技术。为了系统地分解过程开发的技术挑战,本文使用了工艺故障模式和效果分析(FMEA),目的是可扩展,斜坡上升优化和经济的生产线。因此,通过调查早期原型生产概念的结果,适用于发夹定子的部分未知过程技术,特别是对于必要的弯曲和接触技术。分析列出了由于使用早期生产原型为发夹定子而导出的过程相互依赖性而可能不足的过程功能。总之,本文提出了一种将FMEA-Method应用于发夹定子的早期原型生产概念的方法,使得可以将结果集成到最终过程开发和技术选择中。

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