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Fatigue crack detection and fatigue damage imaging using the non-collinear transverse wave mixing technique

机译:使用非共线横波混合技术疲劳裂纹检测和疲劳损伤成像

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摘要

For the fatigue crack embedded in metallic components, the non-collinear transverse wave mixing technique is applied to detect them and image the fatigue damage around crack. When two non-collinear transverse waves with same frequency meet in components, a resonance longitudinal wave can be generated if the resonance condition is satisfied; the mixing nonlinear parameter is applied to evaluate the nonlinearity of detection positions. The non-collinear wave mixing experiments are conducted on components with different length of fatigue crack. By changing the relative position of transducers, different detection positions can be controlled. According to the distribution of mixing nonlinear parameter at vertical direction, the length of fatigue crack at vertical direction can be measured. Furthermore, the mixing nonlinear parameters of different detection positions around fatigue crack are measured, the image of mixing nonlinear parameter can visualise the damage around fatigue crack which is very easy to assess the fatigue damage of components.
机译:对于嵌入金属部件的疲劳裂缝,应用非共线横波混合技术来检测它们并在裂缝周围的疲劳损伤图像。当两个具有相同频率在组件中相同的非共线横波时,如果满足共振条件,则可以产生共振纵向波;施加混合非线性参数以评估检测位置的非线性。非共线波混合实验在具有不同长度的疲劳裂纹的组分上进行。通过改变换能器的相对位置,可以控制不同的检测位置。根据在垂直方向上混合非线性参数的分布,可以测量垂直方向上的疲劳裂缝长度。此外,测量混合非线性参数周围不同检测位置的混合非线性参数,混合非线性参数的图像可以可视化疲劳裂纹周围的损伤,这很容易评估组分的疲劳损伤。

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