用于材料无损评价的锁定热成像技术

Datong Wu, Gerd Busse
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引用次数: 312

摘要

光热辐射测量允许远程测量局部谐波热传输,其中相位角(在远程光能沉积和由此产生的温度调制之间)对地下特征或缺陷很敏感。相敏调制热成像(或“锁定热成像”)结合了光热辐射测量法和快速红外成像技术的优点,从而在短时间内揭示隐藏的缺陷。本文对其原理和各种应用进行了阐述和分析。虽然这种锁定热成像是基于整个感兴趣区域的远程光学加热,但可以使用调制超声选择性地加热缺陷,该缺陷通过在缺陷区域增强的机械损耗角效应转化为热量。这种“超声锁定热成像”提供的图像显示缺陷的方式类似于光学显微镜中的暗场成像。
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Lock-in thermography for nondestructive evaluation of materials

Photothermal radiometry allows for remote measurement of local harmonic heat transport where the phase angle (between remote optical energy deposition and resulting temperature modulation) is sensitive to subsurface features or defects. Phase sensitive modulation thermography (or ‘lock-in thermography’) combines the advantages of photothermal radiometry with the fast technique of infrared imaging thereby revealing hidden defects in a short time. In this paper the principle and various applications are described and analyzed. While this lock-in thermography is based on remote optical heating of the whole area of interest, one can heat defects selectively with modulated ultrasound which is converted into heat by the mechanical loss angle effect which is enhanced in defect regions. This ‘ultrasonic lock-in thermography’ provides images showing defects in a way that is similar to dark field imaging in optical microscopy.

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