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首页> 外文期刊>Metals and Materials International >Fabrication of a High Performance Acoustic Emission (AE) Sensor to Monitor and Diagnose Disturbances in HTS Tapes and Magnet Systems
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Fabrication of a High Performance Acoustic Emission (AE) Sensor to Monitor and Diagnose Disturbances in HTS Tapes and Magnet Systems

机译:高性能声发射(AE)传感器的制造,用于监视和诊断HTS磁带和磁体系统中的干扰

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摘要

An acoustic emission (AE) technique was introduced as a non-destructive method to monitor sudden deformation caused by local heat concentrations and micro-cracks within superconductors and superconducting magnets. However, the detection of AE signals in a high temperature superconductor (HTS) tape is not easy because of its low signal to noise ratio caused by the noise from boiling liquid cryogen or mechanical vibration from the cryo-cooler. Therefore, high performance piezoelectric ceramics are needed to improve the sensitivity of the AE sensor. The aim of this study was to improve the piezoelectric and dielectric properties to enhance the performance of an AE sensor. This study examined the effects of Nb_2O_5 addition (0.0 wt.% to 2.0 wt.%) on the properties of high performance piezoelectric ceramics, Pb(Zr_(0.54)Ti_(0.46))O_3 + 0.2 wt.% Cr_2O_3, sintered at 1200 °C for 2 h. The performance was examined with respect to the acoustic emission response of AE sensors manufactured using the specimens with various Nb_2O_5 contents. Superior sensor performance was obtained for the AE sensors fabricated with the specimens containing 1.0 wt.% to 1.5 wt.% Nb_2O_5. The performance and characteristics of the AE sensors were in accordance with their piezoelectric and dielectric properties.
机译:声发射(AE)技术作为一种非破坏性方法被引入,以监视由局部热量集中以及超导体和超导磁体中的微裂纹引起的突然变形。但是,在高温超导(HTS)磁带中检测AE信号并不容易,因为其低的信噪比是由沸腾的液体冷冻剂产生的噪声或来自冷冻冷却器的机械振动引起的。因此,需要高性能的压电陶瓷来改善AE传感器的灵敏度。这项研究的目的是改善压电和介电性能,以增强AE传感器的性能。这项研究研究了添加Nb_2O_5(0.0 wt。%至2.0 wt。%)对高性能压电陶瓷Pb(Zr_(0.54)Ti_(0.46))O_3 + 0.2 wt。%Cr_2O_3在1200烧结的性能的影响保持2小时。针对使用各种Nb_2O_5含量的样品制造的AE传感器的声发射响应,检查了性能。对于由包含1.0重量%至1.5重量%的Nb_2O_5的样品制造的AE传感器,获得了优异的传感器性能。 AE传感器的性能和特性取决于其压电和介电性能。

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