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Resonant ultrasonic imaging of defects for advanced non-linear and thermosonic applications

机译:缺陷的共振超声成像,适用于高级非线性和热超声应用

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摘要

An efficient wave-defect interaction is the key to high non-linear and thermal responses of flaws to be applied in ultrasonic imaging for nondestructive material evaluation. To selectively enhance defect vibrations a concept of local defect resonance is developed and applied to ultrasonic activation of defects. The frequency match between the defect resonance frequency and the probing ultrasonic wave results in a substantial rise of the defect non-linear response and its local temperature. The non-linear applications of this concept demonstrated in this paper cover both the higher harmonic and frequency mixing modes. The defect resonance is shown to be accompanied by depletion of the excitation frequency vibration due to nonlinear frequency conversion to higher harmonics. The local generation of higher frequency components provides a high thermal defect response in such acoustically non-linear thermosonic mode.
机译:有效的波缺陷相互作用是缺陷的高非线性和热响应的关键,该缺陷将在超声成像中用于无损材料评估。为了选择性地增强缺陷振动,开发了局部缺陷共振的概念并将其应用于缺陷的超声激活。缺陷共振频率和探测超声波之间的频率匹配导致缺陷非线性响应及其局部温度的大幅上升。本文所论证的这一概念的非线性应用涵盖了高次谐波和混频模式。结果表明,由于将非线性频率转换为高次谐波,缺陷共振伴随着激励频率振动的耗尽。在这种声学非线性热超声模式下,高频分量的局部产生提供了高的热缺陷响应。

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