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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >A novel shape memory alloy-based filter wheel drive mechanism for astronomical payloads
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A novel shape memory alloy-based filter wheel drive mechanism for astronomical payloads

机译:一种新型的基于形状记忆合金的天文有效载荷滤轮驱动机构

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摘要

Astronomical payloads for monitoring of X-rays from planetary bodies require an active filter wheel drive mechanism to control the energy threshold, encompassing a larger range of solar X-ray intensity. If the detector aperture in the monitoring instrument is small, a manageable count rate is obtained but with poor sensitivity during lower activity period. On the other hand, a detector sensitive for lower activity period does not provide meaningful data during large intensity periods, due to saturation of detector front-end electronics. A survey of the existing drive mechanisms revealed that motorized mechanisms have been used for such applications with inherent drawbacks of increased mass, higher cost, and electrical complexity. In the present work, authors have designed and developed a novel filter wheel drive mechanism that uses an eccentrically mounted pin actuated by sequential activation of three shape memory alloys wires together. Also, it consists of a compliant leaf spring that avoids the requirement of an additional hold down by providing detent to hold the filter wheel in its intended position and acts as prime mover when the torque developed by shape memory alloy wires gets diminished due to reduction in moment arm during wheel rotation. This design offers substantial reduction in mass, development cost, and electrical complexity that can be exploited to send multiple detectors on board future interplanetary spacecraft. This paper presents the details of design, analysis, hardware realization, testing, and novelty of the mechanism.
机译:用于监视来自行星体的X射线的天文有效载荷需要主动的滤光轮驱动机构来控制能量阈值,从而涵盖更大范围的太阳X射线强度。如果监视仪器中的检测器孔径较小,则可获得较低的计数率,但在较低的活动时间段内灵敏度较差。另一方面,由于检测器前端电子设备的饱和,对较低活动时间段敏感的检测器在大强度期间不会提供有意义的数据。对现有驱动机构的调查显示,电动机构已用于此类应用,其固有缺点是质量增加,成本更高以及电气复杂性较高。在当前的工作中,作者设计并开发了一种新颖的滤光轮驱动机构,该机构使用偏心安装的销,该销通过依次将三种形状记忆合金线一起激活而致动。此外,它还包括一个柔性板簧,该板簧通过提供将棘轮固定在其预定位置的止动装置来避免额外的压紧,并且当由于形状记忆合金线的减小而导致的形状记忆合金线产生的扭矩减小时,它可以用作原动机。车轮旋转过程中的力矩臂。这种设计可显着降低质量,开发成本和电气复杂性,这些技术可用于在未来的行星际航天器上发送多个探测器。本文详细介绍了该机制的设计,分析,硬件实现,测试和新颖性。

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