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Automated contacting technology for needle winding applications with distributed windings

机译:自动接触技术,适用于分布绕组的针式绕组应用

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The contacting process of the stator windings is one of the key processes regarding quality and lifetime of an electric machine. Especially in automotive applications, where vibrations and challenging temperature profiles are straining the joint, a stable contacting process is needed. As of yet, the contacting process for round wire applications with distributed windings includes many manual actions. As manual operations are always afflicted by varying results, these actions are conflicting with the aim of a stable process. Additionally, the manual processes lead to larger labor cost in the high volume production of manufacturers. For these reasons, a stable, automatable contacting process for round wire applications with distributed windings brings advantages. In combination with the needle winding technology and its feature of exact wire placement, a different way of contacting process was proposed. The main focus was put on the quality of the joint on the one hand and on the manufacturability with needle winding on the other hand. In several iterations a stable process and a corresponding tool geometry could be derived. In winding tests the manufacturability was ensured. The influence of different welding parameters on the joint quality was investigated. The result builds a basis for further automation of different processes in the manufacturing of stators with distributed round-wire windings.
机译:定子绕组的接触过程是有关电机质量和寿命的关键过程之一。尤其在汽车应用中,振动和挑战性的温度曲线使接头张紧,因此需要稳定的接触过程。到目前为止,具有分布绕组的圆线应用的接触过程包括许多手动操作。由于总是会受到结果变化的影响,因此这些操作与稳定过程的目标相冲突。另外,手工过程导致制造商的大量生产中更大的人工成本。由于这些原因,用于具有分布式绕组的圆线应用的稳定,可自动化的接触过程带来了优势。结合针式缠绕技术及其精确的导线放置特性,提出了一种不同的接触过程方式。一方面主要着眼于接头的质量,另一方面着眼于针刺的可制造性。在几次迭代中,可以得出稳定的过​​程和相应的刀具几何形状。在绕组测试中,确保了可制造性。研究了不同焊接参数对接头质量的影响。该结果为进一步制造具有分布式圆线绕组的定子的不同过程奠定了基础。

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