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Optimal Design of Annular Phased Array Transducers for Material Nonlinearity Determination in Pulse–Echo Ultrasonic Testing

机译:脉冲回波超声检测中材料非线性测定环形相控阵换能器的最佳设计

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摘要

Nonlinear ultrasound has been proven to be a useful nondestructive testing tool for micro-damage inspection of materials and structures operating in harsh environment. When measuring the nonlinear second harmonic wave in a solid specimen in the pulse–echo (PE) testing mode, the stress-free boundary characteristics brings the received second harmonic component close to zero. Therefore, the PE method has never been employed to measure the so-called “nonlinear parameter (β)”, which is used to quantify the degree of micro-damage. When there are stress-free boundaries, a focused beam is known to improve the PE reception of the second harmonic wave, so phased-array (PA) transducers can be used to generate the focused beam. For the practical application of PE nonlinear ultrasonic testing, however, it is necessary to develop a new type of PA transducer that is completely different from conventional ones. In this paper, we propose a new annular PA transducer capable of measuring β with improved second harmonic reception in the PE mode. Basically, the annular PA transducer (APAT) consists of four external ring transmitters and an internal disk receiver at the center. The focused beam properties of the transducers are analyzed using a nonlinear sound beam model which incorporates the effects of beam diffraction, material attenuation, and boundary reflection. The optimal design of the APAT is performed in terms of the maximum second harmonic reception and the total correction close to one, and the results are presented in detail.
机译:非线性超声已被证明是一种有用的无损检测工具,用于在恶劣环境中运行的材料和结构的微伤检测。当在脉冲回波(PE)测试模式中测量固体样品中的非线性二次谐波时,应力边界特性使接收的第二谐波分量接近零。因此,从未采用PE方法测量所谓的“非线性参数(β)”,其用于量化微损伤程度。当存在有压力边界时,已知聚焦光束改善第二谐波的PE接收,因此相控阵(PA)换能器可用于产生聚焦光束。然而,对于PE非线性超声波检测的实际应用,有必要开发一种与传统方式完全不同的新型PA换能器。在本文中,我们提出了一种新的环形PA换能器,其能够测量具有改进的PE模式中的第二谐波接收的β。基本上,环形PA换能器(APAT)由四个外部环发射器和中心的内部盘接收器组成。使用非线性声光束模型分析换能器的聚焦光束特性,该非线性声光束模型包括光束衍射,材料衰减和边界反射的效果。在最大二次谐波接收和接近一个的总校正的方面执行APAT的最佳设计,并且结果详细介绍。

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