添加剂制造的铜导体:不同密度和横截面样品的阻抗特性

Christian Wachter, Fenja Haller, Florian Liebetrau
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引用次数: 0

摘要

通过增材制造,铜绕组甚至整个线圈可以用一种全新的、与普通制造方法完全不同的方法制造。线圈设计不再受电线弯曲半径或绕线机几何性能的限制。因此,增材制造为铜绕组的设计提供了新的自由度,从而为电机的设计提供了自由度。然而,印刷铜材料的电性能必须精确地知道,并且应该与实心铜线相媲美。本文研究了两种不同铜合金在不同打印密度和两种不同截面面积下的增材制造铜导体的阻抗特性。此外,由多个扭曲子剖面组成的铜导体被检查,模拟绞合导体。测量结果与挤压铜型材相关,以确保可比性。通过在较宽的频率范围内进行调查来检验趋肤效应的影响。此外,还可以清楚地显示出不同的打印密度对有效电阻的影响。除了测量结果外,还对其可能的应用领域和局限性进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Additive Manufactured Copper Conductors: Impedance Characteristics of Samples with Varying Density and Cross-section profile
With additive manufacturing, copper windings and even whole coils can be manufactured in a new, totally different approach than with common manufacturing methods. The coil design is no longer bound to the limitations given by the wires bend radius or the geometric capabilities of winding machines. Therefore, additive manufacturing offers new degrees of freedom for the design of copper windings and thus the design of electric machines. However, the electric properties of printed copper material must be known exactly and should be comparable to solid copper wire. This paper examines the impedance characteristics of additive manufactured copper conductors of two different copper alloys with varying print density and two different cross-section areas. Additionally, copper conductors consisting of multiple twisted subprofiles are examined, emulating stranded conductors. The measurement results are set in relation to an extruded copper profile to ensure comparability. The influence of the skin effect is examined by performing the investigations over a wide frequency range. Furthermore, the effect of different print densities on the effective resistance can be shown clearly. Besides the measurement results, an evaluation of the possible field of application and the limitations is given.
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