首页> 外文期刊>Механика композитных материалов: Науч.-теорет. журн. >NONDESTRUCTIVE EVALUATION OF ONE-DIMENSIONAL PERIODIC STRUCTURES BY TRANSMISSION OF LASER-EXCITED WIDE-BAND ACOUSTIC PULSES
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NONDESTRUCTIVE EVALUATION OF ONE-DIMENSIONAL PERIODIC STRUCTURES BY TRANSMISSION OF LASER-EXCITED WIDE-BAND ACOUSTIC PULSES

机译:激光激发宽带声脉冲传输对一维周期结构的非破坏性评估

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摘要

The propagation of ultrasound in one-dimensional model and real periodic structures (PS) is studied experimentally by the method of optoacoustic spectroscopy based on laser thermooptical excitation and wide-band piezodetection of short acoustic pulses. It is shown that the ultrasound transmission spectrum of PS has stop- and pass-bands, and the greater the number of layers in PS the deeper the stop-bands. The case where the thickness, density, and ultrasound velocity of one or several layers in PS are modified is studied in detail. Then, a narrow local maximum of ultrasound transmission appears in the stop-band, whose location depends considerably on the position of the "defect" layer in PS. The experimental data coincide well with the theoretical calculation. Nondestructive evaluation of real PSs consisting of two epoxy-glued identical aluminum plates is carried out by the optoacoustic method. Such materials are widely used in aircraft industry. It is shown that the ultrasound transmission spectrum for these materials depends considerably on the thickness of an epoxy-glue layer.
机译:通过基于激光热光激发和短声脉冲的宽带压电检测的光声光谱法,研究了超声在一维模型和真实周期结构(PS)中的传播。结果表明,PS的超声透射谱具有阻带和通带,并且PS中的层数越多,阻带越深。详细研究了修改PS中一层或多层的厚度,密度和超声速度的情况。然后,在阻带中出现了一个狭窄的超声传输局部最大值,阻带的位置在很大程度上取决于PS中“缺陷”层的位置。实验数据与理论计算吻合良好。通过光声法对由两块环氧胶相同的铝板组成的真实PS进行无损评估。这样的材料被广泛用于飞机工业。结果表明,这些材料的超声透射光谱在很大程度上取决于环氧胶层的厚度。

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