Miniaci Marco, Marzani Alessandro, Testoni Nicola, De Marchi Luca
Department of Civil, Environmental and Materials Engineering - DICAM, University of Bologna, Viale del Risorgimento 2, 40136 Bologna, Italy.
Department of Civil, Environmental and Materials Engineering - DICAM, University of Bologna, Viale del Risorgimento 2, 40136 Bologna, Italy.
Ultrasonics. 2015 Feb;56:251-9. doi: 10.1016/j.ultras.2014.07.016. Epub 2014 Aug 2.
In this work the existence of band gaps in a phononic polyvinyl chloride (PVC) plate with a square lattice of cross-like holes is numerically and experimentally investigated. First, a parametric analysis is carried out to find plate thickness and cross-like holes dimensions capable to nucleate complete band gaps. In this analysis the band structures of the unitary cell in the first Brillouin zone are computed by exploiting the Bloch-Floquet theorem. Next, time transient finite element analyses are performed to highlight the shielding effect of a finite dimension phononic region, formed by unitary cells arranged into four concentric square rings, on the propagation of guided waves. Finally, ultrasonic experimental tests in pitch-catch configuration across the phononic region, machined on a PVC plate, are executed and analyzed. Very good agreement between numerical and experimental results are found confirming the existence of the predicted band gaps.
在这项工作中,对具有十字形孔方形晶格的声子聚氯乙烯(PVC)板中带隙的存在进行了数值和实验研究。首先,进行参数分析以找到能够形成完整带隙的板厚和十字形孔尺寸。在此分析中,利用布洛赫 - 弗洛凯定理计算第一布里渊区中晶胞的能带结构。接下来,进行时间瞬态有限元分析,以突出由排列成四个同心方环的晶胞形成的有限尺寸声子区域对导波传播的屏蔽效应。最后,在PVC板上加工的声子区域进行了跨声子区域的纵波检测配置的超声实验测试并进行了分析。发现数值和实验结果之间有很好的一致性,证实了预测带隙的存在。