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Nonlinear Elastic Wave Measurement and Imaging with Two-Frequency Elastic Wave Pulse Complexes

机译:两频弹性波脉冲复合体的非线性弹性波测量和成像

摘要

Methods and instruments for suppression of multiple scattering noise and extraction of nonlinear scattering components with measurement or imaging of a region of an object with elastic waves, where elastic wave pulse complexes are transmitted towards said region where said pulse complexes are composed of a high frequency (HF) and a low frequency (LF) pulse with the same or overlapping beam directions and where the HF pulse is so close to the LF pulse that it observes the modification of the object by the LF pulse at least for a part of the image depth. The frequency and/or amplitude and/or phase of said LF pulse relative to said HF pulse varies for transmitted pulse complexes in order to nonlinearly manipulate the object elasticity observed by the HF pulse along at least parts of its propagation, and where received HF signals are picked up by transducers from one or both of scattered and transmitted components of the transmitted HF pulses. Said received HF signals are processed to form measurement or image signals for display, and where in the process of forming said measurement or image signals said received HF signals are one or both of delay corrected with correction delay in the fast time (depth-time), and pulse distortion corrected in the fast time, and combined in slow time to form noise suppressed HF signals or nonlinear scattering HF signals that are used for further processing to form measurement or image signals. The methods are applicable to elastic waves where the material elasticity is nonlinear in relation to the material deformation.
机译:通过弹性波对物体区域进行测量或成像来抑制多重散射噪声并提取非线性散射分量的方法和仪器,其中弹性波脉冲复合物朝着该区域传输,其中所述脉冲复合物由高频( HF)和具有相同或重叠光束方向的低频(LF)脉冲,并且HF脉冲非常靠近LF脉冲,以至于至少在一部分图像深度处观察到LF脉冲对物体的影响。所述LF脉冲相对于所述HF脉冲的频率和/或振幅和/或相位对于发射脉冲复合物而变化,以便非线性地控制HF脉冲沿其至少部分传播以及接收到的HF信号所观察到的物体弹性。由换能器从发射的HF脉冲的散射和发射分量之一或两者中拾取信号。所述接收的HF信号被处理以形成用于显示的测量或图像信号,并且在形成所述测量或图像信号的过程中,所述接收的HF信号是在快速时间(深度时间)中以校正延迟校正的延迟中的一个或两个。 ,并在较快的时间内校正了脉冲失真,并在较慢的时间内进行了组合,以形成噪声抑制的HF信号或非线性散射HF信号,这些信号用于进一步处理以形成测量或图像信号。该方法适用于材料弹性相对于材料变形为非线性的弹性波。

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