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Optical Synchronous Laser Shadow Vibrometry for Measuring the Young's Modulus of Tungsten at Elevated Temperatures

机译:光学同步激光阴影振动测量测量升高温度下的钨钨模量

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This paper presents the use of an improved laser shadowgraphy method for measuring the dynamic elastic moduli of tungsten, from room temperature to near melting point. The method is based on measuring the frequency of impulse induced longitudinal vibration of a tungsten filament, subject to joule heating. The natural resonance frequency of the filament is obtained by lock-in synchronous photo-detection of the laser-generated filament shadowgraph. The correlation between the filament natural frequency and its temperature lead to the calculation of shear modulus at variable temperatures, the tensile and bulk moduli of tungsten. The results were compared to those obtained by laser Doppler vibrometry (LDV) of a tungsten wire induced by pulsed current technique. Our method permitted a wider measuring temperature range and an easier calculation procedure. The used setup was simple, non-destructive, non-contacting and accurate, enabling low cost vibrometry measurements that help in future synthesis and test of new grades of refractory materials, deployed as plasma facing material in the latest fusion reactor or super alloys in critical applications.
机译:本文介绍了一种改进的激光影像造影方法,用于测量钨的动态弹性模量,从室温到附近的熔点。该方法基于测量脉冲脉动的脉冲频率诱导钨丝的纵向振动,受到焦耳加热。通过激光产生的长丝阴影的锁定同步光检测获得灯丝的自然共振频率。灯丝自然频率与其温度之间的相关性导致可变温度下剪切模量,钨的拉伸和散装模量计算。将结果与由脉冲电流技术引起的钨丝的激光多普勒振动器(LDV)进行比较。我们的方法允许更广泛的测量温度范围和更容易的计算过程。使用的设置简单,无损,不接触和准确,实现了低成本的振动测量,有助于未来的耐火材料等级的合成和测试,在最新的融合反应器或超级合金中展开等离子体面对材料应用程序。

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