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通过双元件换能器的相移改善无牵引边界处的脉冲回波谐波产生。

Improvement of pulse-echo harmonic generation from a traction-free boundary through phase shift of a dual element transducer.

作者信息

Jeong Hyunjo, Zhang Shuzeng, Li Xiongbing

机构信息

Department of Mechanical Engineering, Wonkwang University, Iksan, Jeonbuk 54538, Republic of Korea.

School of Traffic and Transportation Engineering, Central South University, Changsha, Hunan 410075, China.

出版信息

Ultrasonics. 2018 Jul;87:145-151. doi: 10.1016/j.ultras.2018.02.017. Epub 2018 Feb 23.

Abstract

The practical implementation of nonlinear ultrasonic technique has been limited to the through-transmission setup for measuring the second harmonic component induced by the nonlinearity or microstructural changes of test material. A more practical technique such as the pulse-echo testing has been ruled out because a traction-free reflecting boundary destructively alters the nonlinear generation process. A focusing acoustic beam or rigid boundary condition was often employed for biomedical imaging and fluid nonlinearity in the pulse-echo inspection. In this article, we further explore a more general and efficient method to improve the generation of the second harmonic component in the pulse-echo mode with traction-free surface. A dual element planar transdcer with optimal phase shift of the input signal in one element relative to another is proposed for this purpose. The validity of the phase shift concept is confirmed by comparing the enhanced generation of second harmonic amplitudes and the resulting nonlinear parameters with the rigid-boundary case equivalent to the conventional through-transmission setup.

摘要

非线性超声技术的实际应用一直局限于穿透传输设置,用于测量由测试材料的非线性或微观结构变化引起的二次谐波分量。由于无牵引反射边界会破坏性地改变非线性产生过程,因此排除了诸如脉冲回波测试等更实用的技术。在脉冲回波检测中,聚焦声束或刚性边界条件常用于生物医学成像和流体非线性。在本文中,我们进一步探索了一种更通用、更有效的方法,以改善在具有无牵引表面的脉冲回波模式下二次谐波分量的产生。为此,提出了一种双元件平面换能器,其中一个元件的输入信号相对于另一个元件具有最佳相位偏移。通过将增强的二次谐波幅度产生和所得的非线性参数与等效于传统穿透传输设置的刚性边界情况进行比较,证实了相位偏移概念的有效性。

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