首页> 外文期刊>Japanese journal of applied physics >Beam-steering ultrasonic guided waves in a bone-mimicking plate by time-delaying the excitation of the elements in a multi-element array: a numerical study
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Beam-steering ultrasonic guided waves in a bone-mimicking plate by time-delaying the excitation of the elements in a multi-element array: a numerical study

机译:通过延迟多元素阵列中的元素激励的骨模拟板中的光束转向超声波导波:数值研究

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We present a numerical simulation of the beam-steering of ultrasonic guided waves in an isotropic and viscoelastic solid plate, which mimics bovine cortex. The excitation was modeled by a group of five finite-size emitters, each exercised a normal force to the bone plate. Beam steering was achieved by delaying the emitters' firing. The simulation technique was implemented by a semi-analytical finite element scheme to compute the wave fields. At small steering angles, the simulated time-offset signals show mainly two groups of arrivals. The first group is the fast-traveling and high-frequency bulk waves and the second one is slow-traveling and low-frequency guided waves. The fast-traveling waves gradually diminish with increasing steering angles, in agreement with the excitation function of the source influence theory. The frequency-phase velocity dispersion maps also illustrate the phenomenon. The study has demonstrated that the lowest order Lamb asymmetrical mode, A (0), which is useful for bone characterization, can best be excited when the cortical bone thickness is thin, the beam angle is large, and the excited frequency is low.
机译:我们在各向同性和粘弹性固体板中提出了超声波引导波的光束转向的数值模拟,其模拟牛皮质。激发由一组五个有限尺寸的发射器进行建模,每个发射器将常规力施加到骨板上。通过延迟发射器的射击来实现光束转向。模拟技术由半分析有限元方案实现以计算波场。在小转向角下,模拟的时间偏移信号主要显示两组抵达。第一组是快速行驶和高频散热器,第二个是慢速行驶和低频导向波。快速行驶波随着源影响理论的激发功能而逐渐增加转向角度。频率相速度分散图也说明了这种现象。该研究表明,当皮质骨厚度薄时,最低秩序的羊肉不对称模式,A(0)可用于骨骼表征,可以最好地兴奋,梁角大,并且激发频率低。

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