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Development of forming and product properties of copper wire in a linear coil winding process

机译:线性线圈绕制过程中铜线的成型和产品性能的发展

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Since electric motors are becoming more important in many application fields, e. g. hybrid electric vehicles, the optimization of the linear coil winding process is an important contribution to a higher productivity and flexibility. For the investigation of the forming behavior of the winding wire the material behavior is characterized in different experimental setups using wire diameters of 0.63 mm-3.35 mm. By comparing the results of tensile tests and compression tests, a tension-compression anisotropy of the wire behavior can be noticed. The Young's Modulus, measured in cyclic tensile tests from 99-116 GPa (dependent on the amount of strain), is used for the characterization of the elastic behavior of the copper wire. Subsequently, numerical investigations of the linear winding process in a case study for a rectangular bobbin are carried out in order to analyze the influence forming parameters have on the resulting properties of the wound coil. The wire tensile force represents a key parameter concerning the geometrical properties of the wound wire and the clearance between wire and bobbin. Numerical results show that the wire cross-section decreases through bending already at standard wire tensile forces. Additionally, the clearance between wire and bobbin increases with larger wire diameters. The aforementioned results serve as fundamentals for a comprehensive modeling of the linear winding process of noncircular coil bobbins with copper wire.
机译:由于电动机在许多应用领域中变得越来越重要,例如,电动机。 G。对于混合动力电动汽车,线性线圈绕制工艺的优化是提高生产率和灵活性的重要贡献。为了研究绕组线的成形行为,使用0.63 mm-3.35 mm的线径,在不同的实验装置中对材料的行为进行了表征。通过比较拉伸试验和压缩试验的结果,可以观察到线行为的拉伸-压缩各向异性。在循环拉伸试验中从99-116 GPa(取决于应变量)测量的杨氏模量用于表征铜线的弹性行为。随后,在对矩形线轴的案例研究中,对线性绕制过程进行了数值研究,以分析成形参数对卷绕线圈的最终性能的影响。线张力表示与绕线的几何特性以及线与线轴之间的间隙有关的关键参数。数值结果表明,在标准线张力下,导线的横截面已经通过弯曲而减小。另外,导线和线轴之间的间隙随着导线直径的增大而增加。上述结果为非圆形线圈骨架与铜线的线性绕制过程的全面建模提供了基础。

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