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High-temperature (> 1000 °C) acoustic emission sensor

机译:高温(> 1000°C)声发射传感器

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摘要

Piezoelectric crystals have shown promising results as acoustic emission sensors, but are often hindered by the loss of electric properties above temperatures in the 500-700°C range. Yttrium calcium oxyborate, (YCOB), however, is a promising high temperature piezoelectric material due to its high resistivity at high temperatures and its relatively stable electromechanical and piezoelectric properties across a broad temperature range, In this paper, a piezoelectric acoustic emission sensor was designed, fabricated, and tested for use in high temperature applications using a YCOB single crystal. An acoustic wave was generated by a Hsu-Nielsen source on a stainless steel bar, which then propagated through the substrate into a furnace where the YCOB acoustic emission sensor is located. Charge output of the YCOB sensor was collected using a lock-in charge amplifier. The sensitivity of the YCOB sensor was found to have small to no degradation with increasing temperature up to 1000°C. This oxyborate crystal showed the ability to detect zero order symmetric and antisymmetric modes, as well as distinguishable first order antisymmetric modes at elevated temperatures up to 1000 °C.
机译:压电晶体已经显示出具有声发射传感器的有希望的结果,但通常通过500-700℃范围内的温度低于高于温度的电气性能阻碍。然而,氧化钇氧氟化钙钙钙钙酸钙(YCOB)是具有高温电阻率的承诺高温压电材料,并且在宽温度范围内具有相对稳定的机电和压电性能,本文设计了一种压电声发射传感器使用YCOB单晶在高温应用中使用,制造和测试。由不锈钢杆上的HSU-Nielsen源产生声波,然后通过基板传播到YCOB声发射传感器所在的炉中。使用锁定电荷放大器收集YCOB传感器的电荷输出。发现YCOB传感器的敏感性小于没有降低的升高,温度升高至1000℃。该氧气晶体显示出检测零阶对称和防尿上模式的能力,以及可区分的第一阶反对子测量在高达1000°C的升高温度下可区分。

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