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FE-Based Simulation of Hairpin Shaping Processes for Traction Drives

机译:牵引驱动器发夹整形工艺的Fe模拟

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Based on the present change in mobility, there are novel requirements on production technologies of electric drives regarding process reliability, ability for automation, productivity as well as mechanical and electric filling factors. Providing significant advantages compared to conventional winding technologies, the hairpin technology combined with the usage of flat copper wire is a promising opportunity to fulfill the upcoming standards. Hence, the AnStaHa project aims the qualification of the hairpin technology for application in mass production. In spite of numerous advantages, the application of the hairpin technology also shows weaknesses. In particular, the shaping of hairpins is considerably more complex than corresponding process sequences of other winding technologies. The main reasons for this are the rectangular cross section and resulting directional properties of flat copper wires, significant springback effects as well as process-related damage of the wire insulation. Therefore, basic knowledge about the deformation behavior of the wire is required for process dimensioning within the context of system design. This paper handles the numerical simulation of hairpin shaping using the commercial finite element software suite Abaqus FEA. The FE-based approach is validated by experiments for different geometries and includes the complete forming process of hairpins, which is considered to be implemented in two following steps - U-bending and 3-D-shaping. Because the numerical analysis takes wire springback into account, the results can be used for a digital evaluation of hairpin shaping processes during the period of system design.
机译:基于目前的移动性变化,有关于工艺可靠性的电力驱动器生产技术的新要求,自动化,生产力以及机械和电灌装因素的能力。与传统的绕组技术相比提供了显着的优势,发夹技术与平铜线的使用相结合,是满足即将到来的标准的有希望的机会。因此,Anstaha项目旨在履行批量生产施工技术的资格。尽管有许多优点,但发夹技术的应用还显示出缺点。特别地,发夹的成形比其他绕组技术的相应过程序列相当复杂。这是矩形横截面,导致扁平铜线的定向性,显着的回弹效果以及电线绝缘的工艺相关损坏。因此,关于系统设计的背景下的过程尺寸需要关于电线变形行为的基本知识。本文处理了商业有限元软件套件ABAQUS FEA的发夹整形的数值模拟。通过不同几何形状的实验验证了Fe基方法,包括发夹的完整成形过程,其被认为是以两种步骤 - U弯曲和3-D形化实现的。因为数值分析考虑了电线回弹,所以结果可用于系统设计期间发夹整形过程的数字评估。

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