TY - JOUR
T1 - A sensitivity enhancement PEC method for bottom flaws and corrosions detection
AU - Huang, Pu
AU - Pu, Hang
AU - Ding, Yiqing
AU - Li, Zhengyong
AU - Yin, Wuliang
AU - Xu, Lijun
AU - Xie, Yuedong
N1 - Publisher Copyright:
© 2022 Elsevier Ltd
PY - 2022/10
Y1 - 2022/10
N2 - Eddy current testing (ECT) is an efficient tool to detect the bottom flaw and corrosion because of its characteristics of non-contact, high sensitivity, and flexible. Compared with conventional ECT, the pulsed eddy current (PEC) testing applies instantaneous power to the measured object, thereby obtaining obvious transient response. In this paper, a novel Gauss-pulse-modulation eddy current (GPMEC) method is proposed to enhance the sensitivity of sensor. The energy excited by excitation coil is higher at the carrier frequency through frequency analysis. Correspondingly, an appropriate carrier frequency is chosen based on skin depth. Moreover, the Gauss window function acts on pulse-modulation signal to further increase the energy distribution. Following this, the experiments for bottom flaws and corrosions detection are carried out. The theoretical analysis and experimental results demonstrate that GPMEC is advantageous over than conventional PEC for bottom flaws detection.
AB - Eddy current testing (ECT) is an efficient tool to detect the bottom flaw and corrosion because of its characteristics of non-contact, high sensitivity, and flexible. Compared with conventional ECT, the pulsed eddy current (PEC) testing applies instantaneous power to the measured object, thereby obtaining obvious transient response. In this paper, a novel Gauss-pulse-modulation eddy current (GPMEC) method is proposed to enhance the sensitivity of sensor. The energy excited by excitation coil is higher at the carrier frequency through frequency analysis. Correspondingly, an appropriate carrier frequency is chosen based on skin depth. Moreover, the Gauss window function acts on pulse-modulation signal to further increase the energy distribution. Following this, the experiments for bottom flaws and corrosions detection are carried out. The theoretical analysis and experimental results demonstrate that GPMEC is advantageous over than conventional PEC for bottom flaws detection.
KW - Bottom flaws and corrosion detection
KW - Frequency analysis
KW - Gauss-pulse-modulation eddy current
KW - Image processing technology
KW - Sensitivity enhancement
UR - https://www.scopus.com/pages/publications/85138102153
U2 - 10.1016/j.measurement.2022.111910
DO - 10.1016/j.measurement.2022.111910
M3 - 文章
AN - SCOPUS:85138102153
SN - 0263-2241
VL - 202
JO - Measurement: Journal of the International Measurement Confederation
JF - Measurement: Journal of the International Measurement Confederation
M1 - 111910
ER -