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Comparative evaluation of linear-rotary actuator topologies for highly dynamic applications

机译:线性旋转致动器拓扑对高动态应用的比较评价

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A Linear-Rotary Actuator (LiRA) is an electrical machine whose mover can move linearly and rotate as a direct drive (without mechanical transmissions/gearboxes). Such actuators are successfully used in various applications such as pick-and-place machines that mount components on Printed Circuit Boards (PCBs), servo actuation of gearboxes, and in robot arms and/or end effectors. In order to design a compact LiRA with high dynamics, two different LiRA topologies are compared in this paper. A fair comparison is obtained by fixing the outer dimensions of the examined LiRA topologies (diameter and length). Electrical loading of the machines is determined using a simple thermal model, and an optimization based on finite element analysis is carried out. Performance criteria, such as circumferential and axial accelerations as well as maximum axial forces of all analyzed machines are compared. Moreover, metrics like total machine mass and volume of the used permanent magnets are included in the evaluation.
机译:线性旋转致动器(Lira)是一种电机,其移动器可以线性地移动并作为直接驱动器(没有机械传输/齿轮箱)旋转。这些致动器成功地用于各种应用,例如拾取机器,该拾取机器安装在印刷电路板(PCB)上的组件,伺服箱和机器人臂和/或结束效应器中的伺服驱动。为了设计具有高动态的紧凑型Lira,在本文中比较了两个不同的Lira拓扑。通过固定所检查的Lira拓扑(直径和长度)的外部尺寸来获得公平的比较。使用简单的热模型确定机器的电负载,并进行基于有限元分析的优化。比较诸如圆周和轴向加速度的性能标准以及所有分析的机器的最大轴向力。此外,评估中包括总机器质量和使用的永磁体的总机质量和体积等度量。

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