Laboratoire de Physique des Matériaux - Faculté des Sciences de Sfax, Tunisia.
Ultrasonics. 2010 Apr;50(4-5):502-7. doi: 10.1016/j.ultras.2009.10.014. Epub 2009 Oct 25.
A hybrid elastic wave method is applied to determine the anisotropic constants of Olive wood specimen considered as an orthotropic solid. The method is based on the measurements of the Lamb wave velocities as well as the bulk ultrasonic wave velocities. Electrostatic, air-coupled, ultrasonic transducers are used to generate and receive Lamb waves which are sensitive to material properties. The variation of phase velocity with frequency is measured for several modes propagating parallel and normal to the fiber direction along a thin Olivier wood plates. A numerical model based mainly on an optimization method is developed; it permits to recover seven out of nine elastic constants with an uncertainty of about 15%. The remaining two elastic constants are then obtained from bulk wave measurements. The experimental Lamb phase velocities are in good agreement with the calculated dispersion curves. The evaluation of Olive wood elastic properties has been performed in the low frequency range where the Lamb length wave is large in comparison with the heterogeneity extent. Within the interval errors, the obtained elastic tensor doesn't reveal a large deviation from a uniaxial symmetry.
一种混合弹性波方法被应用于确定橄榄木样本的各向异性常数,该样本被视为各向异性固体。该方法基于兰姆波速度以及体超声波速度的测量。静电、空气耦合、超声波换能器用于产生和接收对材料性质敏感的兰姆波。在薄的奥利维尔木板上,沿纤维方向平行和垂直传播的几种模式的相速度随频率的变化被测量。开发了一个主要基于优化方法的数值模型,它可以恢复九个弹性常数中的七个,不确定度约为 15%。其余两个弹性常数然后从体波测量中获得。实验兰姆相速度与计算的频散曲线吻合较好。在低频范围内(与非均匀性程度相比,兰姆长度波较大)进行了橄榄木弹性性能的评估。在间隔误差内,得到的弹性张量没有表现出与单轴对称性的大偏差。