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Advanced ultrasound activated Lockin-Thermography for defect selective depth resolved imaging

机译:先进的超声激活锁定热成像技术,用于缺陷选择性深度分辨成像

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Ultrasound activated Lockin-Thermography (,,ultrasound attenuation mapping") is a defect selective NDT-technique. Its main advantage is a high probability of defect detection ("POD") since only defects produce a signal while all other features are suppressed. The mechanism involved is local sound absorption which turns a variably loaded defect into a heat source. Thermographic monitoring of elastic wave attenuation in defects was reported for the first time in 1979 by Henneke and colleagues for continuous and pulsed ultrasound injection. Later, amplitude modulated ultrasound was used to derive frequency coded phase angle images combining defect-selectivity with robustness of measurement. With mono-frequent ultrasound excitation a standing wave pattern might hide defects. With additional modulation of the ultrasound frequency such a misleading pattern can be minimized. Applications related to quality maintenance (aerospace, automotive industry) will be presented in order to illustrate the potential of frequency modulated ultrasound excitation and its applications.
机译:超声激活的锁相热成像技术(“超声衰减图”)是一种缺陷选择无损检测技术,其主要优点是发现缺陷的可能性很高(“ POD”),因为只有缺陷会产生信号,而所有其他特征都被抑制。涉及的机制是局部吸声,将可变负载的缺陷转变成热源,Henneke及其同事在1979年首次报道了对缺陷中弹性波衰减的热像仪监测,用于连续和脉冲超声注入,后来,调幅超声用于用于导出结合了缺陷选择性和测量稳健性的频率编码相位角图像;在单频超声激励下,驻波图可能会掩盖缺陷;通过对超声频率进行额外调制,可以将这种误导性图案降至最低。维修(航空航天,汽车工业)将被介绍以说明调频超声激发的潜力及其应用。

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