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Optimal Design of Eddy Current Damper in Air Bearing Guided Motion System

机译:空气轴承导向运动系统中涡流阻尼器的最佳设计

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Performance of electronic devices has been improved with more precise manufacturing process. Semiconductor is typical electronic component that requires the high precision. In-position stability is one of important factors for the high-end manufacturing. To meet this demand, air bearings and linear motors are often used for the manufacturing equipment as a positioning mechanism. The air bearing forms an air film between the guide surfaces, and there is little friction. The use of air bearings is advantageous for the precise positioning because of the low friction, but the in-position stability is insufficient due to its low stiffness. Additional damping is needed to improve the in-position stability of air bearing guided motion system. When there is magnetic field change, eddy current in a conductor is generated and then a force opposite to and proportional to magnet's speed is produced like a damping component. This can give a damping force to the linear motion system and it takes advantage of the air bearing because it works without contact. Therefore, the Eddy current damping (ECD) makes the air bearing guided motion system more precise. In this paper, three novel designs of ECD module are proposed for the linear motion system with air-bearing and linear motor. The ECDs have Halbach magnet array as a magnetic field sources because the array confines the magnetic flux to the conductor. Experimental results present the improvement of the in-position stability. And then the advantages and disadvantages of each modules are described.
机译:通过更精确的制造过程,电子设备的性能得到了改善。半导体是需要高精度的典型电子元件。在适当的稳定性是高端制造的重要因素之一。为了满足这种需求,空气轴承和线性电动机通常用于制造设备作为定位机构。空气轴承在引导表面之间形成空气薄膜,并且几乎没有摩擦。由于低摩擦,空气轴承的使用对于精确定位是有利的,但由于其低刚度,位置稳定性不足。需要额外阻尼来改善空气轴承导向运动系统的位置稳定性。当存在磁场变化时,产生导体中的涡电流,然后产生与磁体速度相反的力,如阻尼部件。这可以给线性运动系统带来阻尼力,并且它利用空气轴承,因为它没有接触。因此,涡流阻尼(ECD)使空气承载导向运动系统更精确。本文提出了一种带空气和线性电动机的线性运动系统的三种新颖的ECD模块设计。 ECD具有哈巴赫磁体阵列作为磁场源,因为阵列将磁通量限制在导体上。实验结果提高了位置稳定性。然后描述了每个模块的优点和缺点。

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