超声探头的激励特性

Lide Fang, Xiaofei Yu, Qiaoqiao Zeng, Ning Zhao, Xiaoting Li
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引用次数: 1

摘要

超声波换能器的质量直接影响超声波流量计的性能,超声波换能器的功能就是将电信号转换为机械信号,再将机械信号转换为电信号,这个过程实现了超声波的产生和接收。励磁换能器的电信号不同,导致发射换能器的效果不同。根据不同的激励信号,要求发射换能器研究不同激励下接收信号的差异。同时,提出了一种COMSOL仿真方法来模拟单通道超声探头不同的激励方式,以及传输过程中声场分布的差异。实验验证了仿真结果的合理性。激励信号选取不同突发数和突发时间间隔的方波、正弦波作为信号入口。讨论了超声波的传播轨迹、传播时间、声压分布等参数随激励方式的变化,并分析了其对接收信号的影响。
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Excitation Characteristics of Ultrasonic Probe
the quality of ultrasonic transducer has a direct impact on the performance of ultrasonic flowmeter, the ultrasonic transducer function is converting the electrical signal to mechanical signal and mechanical signal to electrical signal, this process realizes the generation and reception of ultrasonic waves. The electrical signals of the excitation transducer are different, causing the effect of the transmitting transducer to be different. Based on different excitation signals, the transmitting transducer is urged to study the difference of receiving a signal under various excitations. At the same time, a COMSOL simulation method was proposed to simulate different excitation methods for single-channel ultrasound probes, and the difference in sound field distribution during transmission. Experiments verify the rationality of simulation results. The excitation signal is selected as a square wave, sine wave, with different burst number and burst time interval as the signal entry. Discuss the parameters such as the propagation trajectory, propagation time and sound pressure distribution of ultrasonic waves with the variation of excitation mode, and analyze its influence on the received signal.
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