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首页> 外文期刊>Physica, C. Superconductivity and its applications >Magnetically coupled gear based drive mechanism for contactless continuous rotation using superconducting magnetic bearing below 10 K
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Magnetically coupled gear based drive mechanism for contactless continuous rotation using superconducting magnetic bearing below 10 K

机译:基于磁耦合齿轮的驱动机构,使用低于10 K的超导磁轴承实现非接触式连续旋转

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摘要

We present the design and mechanical performances of a magnetically coupled gear mechanism to drive a levitating rotor magnet of a superconducting magnetic bearing (SMB). The SMB consists of a ring-shaped high-temperature superconducting array (YBCO) and a ring-shaped permanent magnet. This rotational system is designed to operate below 10 K, and thus the design philosophy is to minimize any potential source of heat dissipation. While an SMB provides only a functionality of namely a bearing, it requires a mechanism to drive a rotational motion. We introduce a simple implementation of a magnetically coupled gears between a stator and a rotor. This enables to achieve enough torque to drive a levitating rotor without slip at the rotation frequency of about 1 Hz below 10 K. The rotational variation between the rotor and the drive gear is synchronised within sigma = 0. 019 Hz. The development of this mechanism is a part of the program to develop a testbed in order to evaluate a prototype half-wave plate based polarization modulator for future space missions. The successful development allows this modulator to be a candidate for an instrument to probe the cosmic inflation by measuring the cosmic microwave background polarization. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们介绍了磁耦合齿轮机构的设计和机械性能,以驱动超导磁轴承(SMB)的悬浮转子磁体。 SMB由环形高温超导阵列(YBCO)和环形永磁体组成。该旋转系统设计为在10 K以下运行,因此设计理念是最大程度地减少任何潜在的散热源。 SMB仅提供一种功能,即轴承,但它需要一种机制来驱动旋转运动。我们介绍定子和转子之间的磁耦合齿轮的简单实现。这使得能够获得足够的转矩,以在低于10 K的大约1 Hz的旋转频率下驱动悬浮转子而不会打滑。转子与驱动齿轮之间的旋转变化在sigma = 0. 019 Hz内同步。这种机制的开发是开发测试平台的程序的一部分,以便评估用于未来太空任务的基于原型半波片的偏振调制器。成功的开发使该调制器成为通过测量宇宙微波本底极化来探测宇宙膨胀的仪器的候选者。 (C)2016 Elsevier B.V.保留所有权利。

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