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Experience on a cryogenic linear mechanism based on superconducting levitation

机译:基于超导悬浮的低温线性机制经验

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The instrumentation of many space missions requires operation in cryogenic temperatures. In all the cases, the use ofmechanisms in this environment is a matter of concern, especially when long lifetime is required.With the aim of removing lifetime concerns and to benefit from the cryogenic environment, a cryogenic contactlesslinear mechanism has been developed. It is based on the levitation of a permanent magnet over superconductor disks.The mechanism has been designed, built, and tested to assess the performances of such technology.The levitation system solves the mechanical contact problems due to cold-welding effects, material degradation byfatigue, wearing, backlash, lubrication...etc, at cryogenic temperatures. In fact, the lower is the temperature the better thesuperconductor levitation systems work.The mechanism provides a wide stroke (18mm) and high resolution motion (1μm), where position is controlled bychanging the magnetic field of its environment using electric-magnets.During the motion, the moving part of the mechanism levitates supported by the magnetic interaction with the hightemperature type II superconductors after reaching the superconductor state down to 90K.This paper describes the results of the complete levitation system development, including extensive cryogenic testing tomeasure optically the motion range, resolution, run-outs and rotations in order to characterize the levitation mechanismand to verify its performance in a cryogenic environment.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:许多空间任务的仪器需要在低温温度下进行操作。在所有的情况下,在这种环境中使用ofmechanisms是值得关注的问题,尤其是当长寿命required.With去除一生关注的目标,并从低温环境效益,低温contactlesslinear机制已经研制成功。它基于超导体的永磁体的悬浮。该机制已经设计,建造和测试,以评估这种技术的性能。悬浮系统由于冷焊效应而解决机械接触问题,物质降解Byfatigue ,在低温温度下佩戴,磨牙,润滑...等等。实际上,较低的温度是更好的修道导体悬浮系统的工作。该机制提供了宽的行程(18mm)和高分辨率运动(1Μ M),其中使用电磁磁铁通过其环境的磁场来控制位置。在运动,该机构的移动部分浮起通过与高温型到达超导体状态下降到90K.This纸后II超导体描述了完整的悬浮系统发展的结果,包括大量的测试低温光学tomeasure所述的磁相互作用所支持运动范围,分辨率,输出和旋转,以表征悬浮机制和验证其在低温环境中的性能。©(2012)照片光学仪表工程师(SPIE)的版权协会。仅供个人使用的摘要下载。

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