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用于抗磁悬浮平面力研究的热解石墨:磁性材料裂纹的潜在微型探测器。

Pyrolytic Graphite for an In-Plane Force Study of Diamagnetic Levitation: A Potential Microdetector of Cracks in Magnetic Material.

作者信息

Liu Runze, Yang Wenjiang, Xiang Hongjun, Zhao Peng, Deng Fuwen, Yan Juzhuang

机构信息

School of Astronautics, Beihang University, Beijing 100191, China.

出版信息

Micromachines (Basel). 2023 Jun 13;14(6):1242. doi: 10.3390/mi14061242.

Abstract

The diamagnetic levitation technique can be applied in non-destructive testing for identifying cracks and defects in magnetic materials. Pyrolytic graphite is a material that can be leveraged in micromachines due to its no-power diamagnetic levitation on a permanent magnet (PM) array. However, the damping force applied to pyrolytic graphite prevents it from maintaining continuous motion along the PM array. This study investigated the diamagnetic levitation process of pyrolytic graphite on a permanent magnet array from various aspects and drew several important conclusions. Firstly, the intersection points on the permanent magnet array had the lowest potential energy and validated the stable levitation of pyrolytic graphite on these points. Secondly, the force exerted on the pyrolytic graphite during in-plane motion was at the micronewton level. The magnitude of the in-plane force and the stable time of the pyrolytic graphite were related to the size ratio between it and the PM. During the fixed-axis rotation process, the friction coefficient and friction force decreased as the rotational speed decreased. Smaller-sized pyrolytic graphite can be used for magnetic detection, precise positioning and other microdevices. The diamagnetic levitation of pyrolytic graphite can also be used for detecting cracks and defects in magnetic materials. We hope this technique will be used in crack detection, magnetic detection and other micromachines.

摘要

抗磁悬浮技术可应用于无损检测,以识别磁性材料中的裂纹和缺陷。热解石墨是一种由于其在永磁体(PM)阵列上的无动力抗磁悬浮而可用于微机械的材料。然而,施加在热解石墨上的阻尼力使其无法沿永磁体阵列保持连续运动。本研究从多个方面研究了热解石墨在永磁体阵列上的抗磁悬浮过程,并得出了几个重要结论。首先,永磁体阵列上的交点具有最低势能,并验证了热解石墨在这些点上的稳定悬浮。其次,热解石墨在平面内运动时所受的力处于微牛顿级别。平面内力的大小和热解石墨的稳定时间与它和永磁体之间的尺寸比有关。在定轴旋转过程中,摩擦系数和摩擦力随着转速的降低而减小。较小尺寸的热解石墨可用于磁检测、精确定位等微器件。热解石墨的抗磁悬浮也可用于检测磁性材料中的裂纹和缺陷。我们希望这项技术能用于裂纹检测、磁检测等微机械中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54df/10304365/8f73ca954f21/micromachines-14-01242-g001.jpg

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