Bruno François, Laurent Jérôme, Jehanno Paul, Royer Daniel, Prada Claire
Institut Langevin, ESPCI Paris, CNRS (UMR 7587), PSL Research University, 75005 Paris, France.
J Acoust Soc Am. 2016 Oct;140(4):2829. doi: 10.1121/1.4965291.
Optimization of Lamb modes induced by laser can be achieved by adjusting the spatial source distribution to the mode wavelength (λ). The excitability of Zero-Group Velocity (ZGV) resonances in isotropic plates is investigated both theoretically and experimentally for axially symmetric sources. Optimal parameters and amplitude gains are derived analytically for spot and annular sources of either Gaussian or rectangular energy profiles. For a Gaussian spot source, the optimal radius is found to be λ/π. Annular sources increase the amplitude by at least a factor of 3 compared to the optimal Gaussian source. Rectangular energy profiles provide higher gain than Gaussian ones. These predictions are confirmed by semi-analytical simulation of the thermoelastic generation of Lamb waves, including the effect of material attenuation. Experimentally, Gaussian ring sources of controlled width and radius are produced with an axicon-lens system. Measured optimal geometric parameters obtained for Gaussian and annular beams are in good agreement with theoretical predictions. A ZGV resonance amplification factor of 2.1 is obtained with the Gaussian ring. Such source should facilitate the inspection of highly attenuating plates made of low ablation threshold materials like composites.
通过将空间源分布调整到模式波长(λ),可以实现激光诱导的兰姆波模式优化。针对轴对称源,从理论和实验两方面研究了各向同性板中零群速度(ZGV)共振的激发特性。通过解析推导得出了高斯或矩形能量分布的点源和环形源的最佳参数及振幅增益。对于高斯点源,发现最佳半径为λ/π。与最佳高斯源相比,环形源的振幅增加了至少3倍。矩形能量分布比高斯能量分布具有更高的增益。通过对包含材料衰减效应的兰姆波热弹性产生进行半解析模拟,证实了这些预测。在实验中,利用轴锥透镜系统产生了具有可控宽度和半径的高斯环形源。对于高斯光束和环形光束测量得到的最佳几何参数与理论预测结果吻合良好。使用高斯环形源获得了2.1的ZGV共振放大因子。这种源应有助于检测由复合材料等低烧蚀阈值材料制成的高衰减板材。