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首页> 外文期刊>Sensors and Actuators, A. Physical >“Zero-power” positioning actuator for cryogenic environments by combining magnetostrictive bimetal and HTS
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“Zero-power” positioning actuator for cryogenic environments by combining magnetostrictive bimetal and HTS

机译:通过结合磁致伸缩双金属和HTS在低温环境下使用的“零功率”定位执行器

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This research presents a novel “zero-power” actuator for cryogenic conditions by combining a magnetostrictive bimetal with a bulk high temperature superconductor (HTS) sample. This actuator is based on two phenomena; “pinning effect”, and “magnetostrictive bimetal”. The relationship between displacement of actuator and applied current was measured when the thickness of the HTS samples was 1, 2, and 3 mm. It was found that because of pinning effect part of the magnetic flux (energy), generated by the coil can be trapped (stored) in the HTS samples. Consequently, the actuator can be held in the desired position when its power is switched off. “Holding range” of actuator is directly proportional to the thickness of the HTS samples. The holding range of 4.5 μm for 1 mm thickness of the HTS increases to 12 μm for 3 mm thickness. The controllability of the actuator over its holding range was also demonstrated.
机译:这项研究通过将磁致伸缩双金属与高温超导体(HTS)样品相结合,提出了一种适用于低温条件的新型“零功率”执行器。该执行器基于两种现象; “钉扎效应”和“磁致伸缩双金属”。当HTS样品的厚度为1、2和3mm时,测量致动器的位移与施加的电流之间的关系。已经发现,由于钉扎效应,由线圈产生的部分磁通量(能量)可以被捕获(存储)在HTS样本中。因此,当关闭电源时,可以将执行器保持在所需的位置。执行器的“保持范围”与HTS样品的厚度成正比。对于1毫米厚的HTS,4.5微米的保持范围增加到3毫米厚的12微米。还展示了执行器在其保持范围内的可控性。

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