可重构性
材料科学
制作
干扰(通信)
灵敏度(控制系统)
共振(粒子物理)
声学
液晶
频带
光电子学
有限元法
电子工程
物理
工程类
结构工程
电气工程
电信
医学
频道(广播)
替代医学
病理
粒子物理学
天线(收音机)
作者
Tong Zhu,Tingting Wang,Hong‐Tao Zhou,Yan‐Feng Wang,Yue‐Sheng Wang
标识
DOI:10.1088/1361-665x/ad1d71
摘要
Abstract We propose a reconfigurable phononic crystal (PnC) for detecting the concentration of solutes in liquids. The designed PnC consists of liquid-filled hollow pillars and connecting bars. The finite element method is used to calculate the transmission spectra and band structures of PnC filled with various liquids. We fabricate 3D printed samples and conduct corresponding experiments. The results show that sound velocity is the key parameter affecting the frequency of the passing band. As the sound velocity increases, the resonance frequency shifts down. For both NaCl solution and ethanol solution, good linear relationships between the resonance frequency and liquid concentration are established. Experimental results show good agreement with simulations, and stable detection capabilities are maintained in the presence of interference. The impact of fabrication tolerances on sensor performance has also been discussed, with a greater impact on sensitivity and a smaller impact on Q -factor. The reconfigurability also shows the potential of the design of multi-liquid PnC sensors.
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