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Design and Comparison of Permanent Magnet Self-Bearing Linear-Rotary Actuators

机译:永磁自轴承线性旋转执行器的设计与比较

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摘要

Linear-rotary actuators (LiRAs) are electric machines that can perform linear and rotary movements. They are used in many different applications, for example, for pick-and-place robots, in packaging or sorting lines, or as gearbox actuators. A linear-rotary movement can be obtained with various combinations of linear and rotary machines, whereas depending on the specifications of the underlying application the most suitable actuator arrangement has to be identified. In order to simplify the selection of the appropriate actuator configuration, this paper first gives an overview of possible realization concepts of linear-rotary actuators, which are also suitable to implement magnetic bearings (MB). Afterwards, fundamental scaling laws concerning achievable axial forces and torques of linear and rotary machines with interior and exterior rotor arrangement are derived, enabling a qualitative comparison in order to figure out the most suitable actuator concept. In this context, it is important that the derivation also considers the machine-internal heat flow and the heat dissipation to the ambient, which finally leads to a maximum current density depending on the selected topology. All findings are verified by finite element method simulations. In order to show the applicability of the derived scaling laws, a design example is discussed.
机译:线性旋转致动器(LiRA)是可以执行线性和旋转运动的电机。它们用于许多不同的应用程序中,例如,用于拾放机器人,包装或分拣线或变速箱致动器。线性和旋转机器的各种组合可以获得线性旋转运动,而根据基础应用的规格,必须确定最合适的致动器布置。为了简化对适当的执行器配置的选择,本文首先概述了线性旋转执行器的可能实现概念,它们也适用于实现磁性轴承(MB)。随后,得出了关于带有内部和外部转子布置的线性和旋转电机可实现的轴向力和转矩的基本定标定律,从而进行了定性比较,从而找出最合适的执行器概念。在这种情况下,重要的是,推导还应考虑机器内部的热流和对环境的散热,这最终会导致最大电流密度,具体取决于所选的拓扑。所有发现均通过有限元方法仿真进行了验证。为了显示导出的缩放定律的适用性,讨论了一个设计实例。

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