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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >An automatic compact Schlieren imaging system for ultrasound transducer testing
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An automatic compact Schlieren imaging system for ultrasound transducer testing

机译:用于超声换能器测试的自动紧凑型Schlieren成像系统

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摘要

The current standard used for the characterization of ultrasonic transducers is the hydrophonic technique, which is able to measure the acoustic pressure profile. This technique allows a quantitative analysis, but is marred by several problems. A scan of the region of interest is a time-consuming operation, especially when measuring a long acoustic beam. Furthermore, a hydrophone placed near the radiating surface is certainly an impediment to the free propagation of the field. Off-axis measurements can be inaccurate because of the angular response of the hydrophone. These problems, together with the costs, have encouraged the search for an alternative quick and inexpensive test system. The well-known Schlieren technique allows a real-time visualization of the whole pressure range of the transducers, but to display the entire beam emitted by the transducers it is necessary to use very large-diameter lenses, with focal lengths of several meters. Such systems are very cumbersome and difficult to use. The system developed in this paper allows the imaging of an acoustic beam up to 200 mm in length, but the system is compact, being only about 1 m long and 0.30 m wide. A similar system based on the classic Schlieren effect would be several meters long, with lenses of 200 mm in diameter. Finally, the system can reconstruct the section of the beam at any height, using an acoustic tomography technique, and can also implement a quantitative analysis. Because it uses only commercial components, the developed and fabricated ultrasonic beam analyzer is a very low-cost imaging system. The goal of this work is to create a compact, low-cost system based on this technique to test a wide range of ultrasonic transducers up to 40 MHz and above.
机译:用于表征超声换能器的当前标准是水声技术,该技术能够测量声压分布。该技术可以进行定量分析,但存在一些问题。扫描感兴趣区域是一项耗时的操作,尤其是在测量长声束时。此外,放置在辐射表面附近的水听器肯定会阻碍磁场的自由传播。由于水听器的角度响应,离轴测量可能不准确。这些问题以及成本,促使人们寻求替代的快速且廉价的测试系统。众所周知的Schlieren技术可以实时显示换能器的整个压力范围,但是要显示换能器发出的整个光束,必须使用焦距为几米的超大直径透镜。这样的系统非常麻烦并且难以使用。本文开发的系统可以对长达200 mm的声束进行成像,但是该系统非常紧凑,只有大约1 m长和0.30 m宽。一个基于经典Schlieren效应的类似系统将长几米,并具有200毫米直径的镜头。最后,该系统可以使用声学层析成像技术在任何高度重建光束的截面,还可以执行定量分析。因为它仅使用商业组件,所以开发和制造的超声波束分析仪是一种非常低成本的成像系统。这项工作的目标是基于此技术创建一个紧凑,低成本的系统,以测试高达40 MHz及以上的各种超声换能器。

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