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Ultrasonic measurements of Young's modulus and extensional wave attenuation in refractory metal wires at elevated temperatures with application to ultrasonic thermometry

机译:高温下耐火金属丝中杨氏模量和拉伸波衰减的超声波测量及其在超声波测温中的应用

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Ultrasonic velocity and attenuation measurements have been made by traveling‐wave methods on several refractory metals and their alloys. Broad‐band pulses centered around 120 kHz were used for extensional waves (and some torsional waves) in wire specimens. Elastic moduli calculated from the velocities decrease with increasing temperature; the slope increases in magnitude at about half the absolute melting point. At the same point, the attenuation begins to increase rapidly and peaks 300–600°C above the breakpoint. These effects are ascribed to absorption in grain boundaries. The transit time versus temperature in rhenium wire has been calibrated for the use of rhenium as an ultrasonic thermometer sensor. Ultrasonic thermometry above 2000°C is an application of the present measurements.
机译:超声波速度和衰减测量是通过行波方法对几种难熔金属及其合金进行的。以120 kHz为中心的宽带脉冲用于线材样本中的延伸波(和一些扭转波)。由速度计算出的弹性模量随温度的升高而降低。斜率在绝对熔点的一半左右增加。在同一点,衰减开始迅速增加,并在断点以上300–600°C达到峰值。这些作用归因于晶界的吸收。为了将of用作超声温度计传感器,已经校准了wire线中的传输时间与温度的关系。高于2000°C的超声波测温法是当前测量的一种应用。

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    《Journal of Applied Physics》 |1974年第6期|P.2409-2420|共12页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 入库时间 2022-08-17 13:20:32

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