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首页> 外文期刊>Japanese Journal of Applied Physics. Part 2, Letters >Eddy-Current-Based Nondestructive Inspection System Using Superconducting Quantum Interference Device for Thin Copper Tubes
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Eddy-Current-Based Nondestructive Inspection System Using Superconducting Quantum Interference Device for Thin Copper Tubes

机译:铜管超导量子干涉装置基于涡流的无损检测系统

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摘要

An eddy-current-based nondestructive inspection (NDI) system using superconducting quantum interference device (SQUID) cooled using a coaxial pulse tube cryocooler was constructed for the inspection of microflaws on copper tubes employing a high-T_c SQUID gradiometer and a Helmholtz-like coil inducer. The detection of artificial flaws several tens of μm in depth on copper tubes 6.35 mm in outer diameter and 0.825 mm in thickness was demonstrated using the SQUID-NDI system. With an excitation field of 1.6 μT at 5 kHz, a 30-μm-depth flaw was successfully detected by the system at an SN ratio of at least 20. The magnetic signal amplitude due to the flaw was proportional to both excitation frequency and the square of flaw depth. With consideration of the system's sensitivity, the results indicate that sub-10-μm-depth flaws are detectable by the SQUID-NDI system.
机译:构造了一个涡流式无损检测(NDI)系统,该系统使用同轴脉冲管低温冷却器冷却的超导量子干涉装置(SQUID),用于检查铜管上的微缺陷,该系统采用高T_c SQUID梯度计和类似亥姆霍兹的线圈诱导剂。使用SQUID-NDI系统证明了在直径为6.35毫米,厚度为0.825毫米的铜管上检测到数十微米深的人工缺陷。在5 kHz的励磁场下有1.6μT的激励场,系统以SN比至少为20成功检测到了30μm深度的缺陷。由于缺陷引起的磁信号幅度与激励频率和平方成正比。缺陷深度。考虑到系统的敏感性,结果表明,SQUID-NDI系统可检测到深度小于10μm的缺陷。

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