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Impact of crack geometry on transmission frequency characteristics in eddy-current non-destructive evaluation

机译:裂缝几何对涡流非破坏性评估中传输频率特性的影响

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Swept frequency eddy-current non-destructive evaluation of defects is investigated in this paper. Influence of crack geometry on transmission frequency characteristics is experimentally studied. Plate specimens having electro-discharge machined (EDM) slits of various lengths and depths are inspected using an eddy-current probe. The probe is fixed at certain positions during the inspection. Frequency of the exciting signal is changed in a defined range and frequency transfer functions are studied. The presented results clearly show that the frequency transfer functions depend on the slit's dimensions. These unique results bring new insight into possible employment of fixed eddy current sensors driven with swept frequency signal for crack's evaluation.
机译:本文研究了扫描频率涡流的缺陷的无损评估。实验研究了裂缝几何对透射频率特性的影响。使用涡流探针检查具有各种长度和深度的电放电加工(EDM)狭缝的板样本。探针在检查期间固定在某些位置。励磁信号的频率在限定的范围内改变,并且研究了频率传递函数。所提出的结果清楚地表明频率传递函数取决于狭缝的尺寸。这些独特的结果将新的洞察力与扫描频率信号驱动的固定涡流传感器采用新的洞察,以进行裂缝评估。

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