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Influence of surface roughness on the measurement of acoustic nonlinearity parameter of solids using contact piezoelectric transducers

机译:用触点压电换能器表面粗糙度对固体声学非线性参数测量的影响

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The current article reports on the experimental study of the influence of surface roughness on the measurement of the acoustic nonlinearity parameter. The nonlinearity parameter was measured using contact piezoelectric transducers, which were calibrated using the reciprocity based technique. Aluminum and steel samples were chosen to study the influence of hardness of the sample on the measurement of the nonlinearity parameter. While, lower Ra value (average asperity height) aluminum samples were more susceptible to surface deformation and scratches from coupling the transducer to the sample, the same could not be observed for steel samples. Results demonstrate a large variation in nonlinearity parameter for aluminum (similar to 35%) compared to steel (similar to 2%) between two consecutive experiments, suggesting flattening of asperities after the first experiment. Experiments were also performed with 3 different setup configurations; (1) receiver and transmitter on rough sides, (2) receiver on smooth and transmitter on rough side and (3) receiver on rough and transmitter on smooth side. Results show that least variation in the measured nonlinearity parameter was observed when the receiver was placed on the smooth side, and a 10% variation was observed between the three setup configurations. Finally, a comparison of relative nonlinearity parameter calculated using current or voltage ratio and absolute nonlinearity parameter showed large discrepancies. Conclusions were drawn from the experimental observations. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文报告了表面粗糙度对声学非线性参数测量的影响的实验研究。使用触点压电换能器测量非线性参数,该触点使用基于互惠的技术校准。选择铝和钢样品以研究样品硬度对非线性参数的测量的影响。虽然,较低的Ra值(平均粗糙度高度)铝样品更容易受到表面变形,并且从耦合换能器到样品的划痕,对于钢样品,不能观察到相同的速度。结果表明,与钢(类似于2%)与两个连续实验之间的铝(类似于35%)的大变化,建议在第一次实验后的粗糙度平坦。还使用3种不同的设置配置进行实验; (1)粗糙侧面上的接收器和发射器,(2)接收器在粗糙的侧面和发射器上的光滑和发射器上,(3)粗糙的侧面上的变送器上的接收器。结果表明,当将接收器放置在平滑侧时,观察到测量的非线性参数的最少变化,并且在三个设置配置之间观察到10%的变化。最后,使用电流或电压比和绝对非线性参数计算的相对非线性参数的比较显示出大的差异。从实验观察中得出结论。 (c)2017 Elsevier B.v.保留所有权利。

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