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Frequency modulated elastic wave thermography

机译:调频弹性波热成像

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Ultrasound excited thermography allows for defect selective imaging using thermal waves that are generated by elastic waves. The mechanism involved is local friction or hysteresis which turns a dynamically loaded defect into a heat source which is identified by a thermography system. If the excitation frequency matches to a resonance of the vibrating system, temperature patterns can occur that are caused by standing elastic waves. This undesirable patterns can affect the detection of damages in a negative way. We describe a technique how the defect detectability of ultrasound activated thermography can be improved. With the objective of a preferably diffuse distributed sonic field we applied frequency modulated ultrasound to the material. That way the standing waves can be eliminated or reduced and the detectability is improved.
机译:超声激发热成像技术允许使用由弹性波产生的热波对缺陷进行选择性成像。所涉及的机制是局部摩擦或磁滞现象,其将动态加载的缺陷转变成热源,该热源由热成像系统识别。如果激励频率与振动系统的共振相匹配,则可能会出现由驻波弹性波引起的温度模式。这种不良模式会以负面方式影响损坏的检测。我们描述了一种技术,可以如何改善超声激活热像仪的缺陷检测能力。为了获得优选地扩散的声场,我们将调频超声应用于材料。这样,可以消除或减小驻波,并提高可检测性。

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