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用于混凝土结构无损检测的超声双极方波脉冲发生器的设计与开发。

Design and development of ultrasonic bipolar square-wave pulser for non-destructive testing of concrete structures.

作者信息

Jain Harshit, Tarpara Eaglekumar G, Patankar V H

机构信息

Homi Bhabha National Institute (HBNI), Mumbai 400094, India.

出版信息

Rev Sci Instrum. 2020 Sep 1;91(9):094704. doi: 10.1063/5.0006782.

Abstract

This paper provides design and development details of the generation of bipolar High Voltage (HV) square wave pulses for the excitation of low frequency ultrasonic transducers. Such a circuit is required for the purpose of ultrasonic inspection of components, particularly where high energy is required to insonify the attenuative medium, such as concrete. A HV (±350 V) square wave pulse has been generated by an ultrafast complementary Metal Oxide Semiconductor Field-Effect Transistor (MOSFET) pair, which is driven by high speed MOSFET drivers. The generated bipolar square wave pulse has been utilized to energize a 108 kHz ultrasonic transducer to operate in the pulse-echo mode for the evaluation of a concrete test block. The receiver amplifier filters the received low-amplitude echo signals, which are reflected back from a discontinuity, and amplifies further for signal to noise ratio enhancement. The pulser board designed has been tested and evaluated for its functionality to measure ultrasonic velocity in the highly attenuative concrete medium up to a depth of 1 m. The measured value of acoustic velocity was compared with the value obtained from the commercially available ultrasonic pulse velocity instrument, and the values obtained are within ±5%.

摘要

本文提供了用于激励低频超声换能器的双极高压(HV)方波脉冲产生的设计和开发细节。这种电路对于部件的超声检测是必需的,特别是在需要高能量来激励诸如混凝土等衰减介质的情况下。一个高压(±350V)方波脉冲由一对超快互补金属氧化物半导体场效应晶体管(MOSFET)产生,该对晶体管由高速MOSFET驱动器驱动。所产生的双极方波脉冲已被用于激励一个108kHz的超声换能器,使其在脉冲回波模式下运行,以评估一个混凝土测试块。接收放大器对从不连续处反射回来的接收到的低幅度回波信号进行滤波,并进一步放大以提高信噪比。所设计的脉冲发生器板已针对其在高达1m深度的高衰减混凝土介质中测量超声速度的功能进行了测试和评估。将测得的声速值与从市售超声脉冲速度仪获得的值进行了比较,所得值在±5%以内。

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