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Stress Measurement of a Pressurized Vessel Using Candle Soot Nanocomposite Based Photoacoustic Excitation

机译:蜡烛烟灰纳米复合材料基于光声激励的压力容器应力测量

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This article aims to develop a pressure sensing method by utilizing both a contacting active sensor and a non-contactinglaser ultrasound transmitter. An overloaded stress in an industrial pressure tank such as a nuclear reactor may cause acatastrophic explosion; thus, it is essential to monitor the mechanical stress in a reliable manner for the structural safety.Among many different types of stress sensing methods, ultrasound sensing has been attractive due to its non-invasivemeasurement feature. For the recent decades, subsurface longitudinal (SSL) ultrasonic wave has been widely used sinceit is not only less dependent on the internal medium and the surface condition, but also has the fastest wave speedwithout wave distortion. In our work, laser source and Aluminum nitride (AlN) wafer are used to generate and to receiveSSL ultrasonic waves, respectively. In order to increase the photoacoustic efficacy, a composite of carbon-sootnanoparticles (CSNP) and polydimethylsiloxane (PDMS) was attached onto the intermediate wedge at the transmitterside. The photoacoustic experiment results demonstrate a reasonable linear relationship between the stress level and thetime-of-flight variation of the propagated wave signal.
机译:本文旨在通过利用接触式主动传感器和非接触式传感器来开发压力感测方法 激光超声波发射器。工业压力罐(例如核反应堆)中的超负荷应力可能会导致 灾难性爆炸因此,对于结构安全而言,以可靠的方式监控机械应力至关重要。 在许多不同类型的压力感测方法中,超声波感测由于其非侵入性而备受瞩目 测量功能。近几十年来,地下纵波(SSL)超声波已被广泛使用,因为 它不仅较少依赖内部介质和表面状况,而且具有最快的波速 没有波失真。在我们的工作中,激光源和氮化铝(AlN)晶片用于生成和接收 SSL超声波。为了增加光声功效,碳烟灰的复合材料 纳米粒子(CSNP)和聚二甲基硅氧烷(PDMS)在发射器处连接到中间楔块上 边。光声实验结果证明应力水平与应力水平之间有合理的线性关系。 传播波信号的飞行时间变化。

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