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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A comparison of laser ultrasound measurements and finite-element simulations for the dispersion behavior of antisymmetric flexural modes propagating along wedge tips with coatings
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A comparison of laser ultrasound measurements and finite-element simulations for the dispersion behavior of antisymmetric flexural modes propagating along wedge tips with coatings

机译:激光超声测量与有限元模拟的比较,用于沿着涂层的楔形尖端传播的反对称弯曲模式的色散行为

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摘要

Antisymmetric flexural (ASF) modes are antisymmetric types of guided waves propagating along the tip of wedge-shaped waveguides. Acoustic sensors frequently rely on the detection of small mass changes that result from binding a coated layer coupled to the active sensor surface. While a layer is coated on one of the wedge's surfaces, another type of sensor can be potentially developed based on detecting the change of ASF velocity. This paper describes a study on the effects of ASF dispersion behavior for a wedge with a layer of coating using a combined numerical and experimental investigation. In this study, the frequency range is from 0.5 MHz to 10 MHz, and the effective wave propagation length along the wedge tip ranges from 3 mm to 13 mm. Brass wedge tips coated with aluminum layer are studied for the case of slow matrix with fast coating, while aluminum wedge tips with copper coatings are studied for the case of fast matrix/slow coating combination. Like surface acoustic waves propagating along a flat surface with a layer of coating, loaded and stiffened phenomena are observed for the ASF modes traveling along coated wedges. Moreover, the wedge tip geometry is found to have an effect in enhancing the loaded and stiffened phenomena. The numerical results show good agreement with experimental results.
机译:抗对称挠曲(ASF)模式是沿楔形波导尖端传播的导波的非对称类型。声学传感器通常依赖于对微小质量变化的检测,该质量变化是由于结合到有源传感器表面的涂层粘结而产生的。当在楔块的一个表面上涂覆一层涂层时,可以基于检测ASF速度的变化来开发另一种类型的传感器。本文结合数值和实验研究,描述了ASF分散行为对楔形涂层的影响。在这项研究中,频率范围是从0.5 MHz到10 MHz,沿着楔形尖端的有效波传播长度范围是3 mm到13 mm。对于具有快速涂层的慢基体,研究了涂有铝层的黄铜楔形尖端,而对于具有快速基体/慢速涂层组合的情况,研究了具有铜涂层的铝楔形尖端。就像沿带有涂层的平面传播的表面声波一样,对于沿涂层楔形传播的ASF模式,也观察到加载和变硬现象。此外,发现楔形尖端的几何形状在增强加载和硬化现象方面具有作用。数值结果与实验结果吻合良好。

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