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首页> 外文期刊>The Journal of the Acoustical Society of America >Elastic constants determination of anisotropic materials from phase velocities of acoustic waves generated and detected by lasers
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Elastic constants determination of anisotropic materials from phase velocities of acoustic waves generated and detected by lasers

机译:由激光产生和检测的声波的相速度确定各向异性材料的弹性常数

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摘要

This paper describes a method which allows the synthesis of acoustic plane waves by means of laser ultrasonic techniques. When a laser line source radiates at the surface of an anisotropic material, intricate effects are observed on signals obtained by transmission experiments. The material characterization from such a set of signals is not a trivial task since it requires correctly selecting the data necessary for the elastic constants determination, by distinguishing them from all the parasitic phenomena. In the present paper, it is shown that a judicious sum of signals obtained for various positions of the the line source at the surface of a sample leads to the synthesis of an acoustic plane wave for which the odd phenomena disappear. Moreover, by applying a constant delay between the various signals, acoustic plane waves can be synthesized with varied refracted angles. One of the advantages of this technique is to offer convenient access to the phase velocity, providing an easier determination of the elastic constants. This method is successively applied to recover the stiffness coefficients of a silicon crystal and of a composite material. The good agreement between the so-recovered elastic constants and values given by other processes shows the contribution of such a method in the field of material characterization.
机译:本文介绍了一种方法,该方法允许通过激光超声技术合成声平面波。当激光线源辐射到各向异性材料的表面时,观察到通过透射实验获得的信号会产生复杂的影响。从这样一组信号中进行材料表征并不是一件容易的事,因为它需要通过将其与所有寄生现象区分开来,正确选择确定弹性常数所需的数据。在本文中,表明对于在样品表面处的线源的各个位置所获得的明智信号总和,导致合成了奇异面消失的声平面波。此外,通过在各种信号之间施加恒定的延迟,可以合成具有不同折射角的声平面波。该技术的优点之一是可以方便地访问相速度,从而更容易确定弹性常数。该方法被相继应用于恢复硅晶体和复合材料的刚度系数。如此恢复的弹性常数与其他方法给出的值之间的良好一致性表明了这种方法在材料表征领域的贡献。

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