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首页> 外文期刊>Journal of Biomechanics >Fatigue evaluation of long cortical bone using ultrasonic guided waves
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Fatigue evaluation of long cortical bone using ultrasonic guided waves

机译:超声波引导波的长皮质骨疲劳评价

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摘要

Bone fatigue fracture is a progressive disease due to stress concentration. This study aims to evaluate the long bone fatigue damage using the ultrasonic guided waves. Two-dimensional finite-difference time domain method was employed to simulate the ultrasonic guided wave propagation in the long bone under different elastic modulus. The experiment was conducted on a 3.8 mm-thick bovine bone plate. The phase velocities of two fundamental guided modes, A1 and S1, were measured by using the axial transmission technique. Simulation shows that the phase velocities of guided modes A1 and S1 decrease with the increasing of the fatigue damage. After 20,000 cycles of fatigue loading on the bone plate, the average phase velocities of A1 and S1 modes were 6.6% and 5.3% respectively, lower than those of the intact bone. The study suggests that ultrasonic guided waves can be potentially used to evaluate the fatigue damage in long bones. (C) 2018 Elsevier Ltd. All rights reserved.
机译:骨疲劳骨折是由于应力浓度引起的渐进疾病。 本研究旨在使用超声波引导波评估长骨疲劳损坏。 采用二维有限差分时域方法来模拟不同弹性模量下的长骨中的超声波引导波传播。 实验在3.8mm厚的牛骨板上进行。 通过使用轴向传输技术测量两个基本引导模式,A1和S1的相位速度。 模拟表明,引导模式A1和S1的相位速度随着疲劳损坏的增加而降低。 在骨板上疲劳负载20,000个循环后,A1和S1模式的平均相速度分别为6.6%和5.3%,低于完整骨的骨骼。 该研究表明,超声波引导波可以潜在地用于评估长骨骼中的疲劳损坏。 (c)2018年elestvier有限公司保留所有权利。

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