Department of Structural Mechanics, University of Granada, 18071 Granada, Spain.
Instituto de Investigación Biosanitaria, ibs.GRANADA, 18012 Granada, Spain.
Sensors (Basel). 2019 Mar 7;19(5):1156. doi: 10.3390/s19051156.
Parameters to measure nonlinearity in polymethylmethacrylate (PMMA) and carbon fiber reinforced polymer (CFRP) materials have been determined with nonlinear ultrasound (NLUS). The nonlinear parameter β has been determined using the variation of the Finite Amplitude Method (FAM) with harmonic generation. Using this as a reference, the first contribution of this work consists of deducting the experimental configuration necessary to measure this nonlinear parameter in a correct and feasible way. Excitation level, frequency of the wave generated, number of cycles analysed and the distances transducer-specimen and specimen-hydrophone have been determined in both materials. The second contribution is a semi-analytical model that allows to obtain the nonlinear parameter in materials by removing water contribution and considering geometric and viscous attenuation, using the data obtained in an immersion tank. Finally, an application of this model has been carried out in PMMA in order to determinate the nonlinear parameter in this material. From the results, we confirm that the configuration determined in this paper to obtain the parameter β decreases the noise in the measurements.
已经使用非线性超声(NLUS)确定了用于测量聚甲基丙烯酸甲酯(PMMA)和碳纤维增强聚合物(CFRP)材料非线性的参数。使用有限幅度法(FAM)随谐波产生的变化来确定非线性参数β。以此为参考,这项工作的第一个贡献是推导出以正确且可行的方式测量此非线性参数所需的实验配置。在这两种材料中,已经确定了激励水平、产生的波的频率、分析的周期数以及换能器-样品和样品-水听器之间的距离。第二个贡献是一个半解析模型,它允许通过去除水的贡献并考虑几何和粘性衰减,使用在浸入式水箱中获得的数据来获得材料中的非线性参数。最后,在 PMMA 中应用了该模型,以确定该材料中的非线性参数。从结果中,我们确认本文确定的用于获得参数β的配置降低了测量中的噪声。