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首页> 外文期刊>IEEE Transactions on Magnetics >A fiber optics sensor for strain and stress measurements in superconducting accelerator magnets
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A fiber optics sensor for strain and stress measurements in superconducting accelerator magnets

机译:光纤传感器,用于超导加速器磁体中的应变和应力测量

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摘要

A novel cryogenic interferometric fiber optics sensor for the measurement of strain and stress in the coil windings of superconducting accelerator magnets is described. The sensor can operate with two different readout sources, monochromatic laser light and white light respectively. The sensor head is built up as an extrinsic Fabry-Perot interferometer formed with two cleaved fiber surfaces, and can be mounted in several configurations. When read with laser light, the sensor is an extremely sensitive relative strain or temperature detector. When read with white light the absolute strain and pressure can be measured. Results are presented of tests in several configurations at 77 K and 4.2 K, both for the relative and absolute readout method, Finally, the possible use for quench localization using the temperature sensitivity is described.
机译:描述了一种新型的低温干涉式光纤传感器,用于测量超导加速器磁体的线圈绕组中的应变和应力。该传感器可以使用两种不同的读数源分别为单色激光和白光。传感器头由外在的Fabry-Perot干涉仪构建而成,该干涉仪具有两个开裂的纤维表面,并可以多种配置安装。当用激光读取时,该传感器是非常敏感的相对应变或温度检测器。当用白光读取时,可以测量绝对应变和压力。给出了相对和绝对读数方法在77 K和4.2 K的几种配置下的测试结果。最后,描述了使用温度敏感性进行淬灭定位的可能用途。

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