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A Wireless and Passive Strain Sensor With Improved Sensitivity Enabled by Negative Poisson’s Ratio Structure

机译:无线和无源应变传感器,具有通负泊松比率结构的改善灵敏度

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摘要

The conventional magnetostrictive strain sensor suffers from low detection sensitivity. In this study, a wireless and passive magnetostrictive strain sensor with improved sensitivity was proposed, modelled, analyzed, and tested. A hollow plate with a negative Poisson’s ratio structure was taken as the substrate, substituting this for the conventional positive Poisson’s ratio material. An analysis model was established for the negative Poisson’s ratio substrate. Finite element method (FEM) analysis was conducted to verify the negative Poisson’s ratio model. Experiments were carried out to prove the sensitivity enhancement principle. Parametric studies were conducted to investigate the influence of the geometry dimension on the output of the electric signal. We show that the proposed sensor has an improved strain test sensitivity of up to 176.3%. The experimental results further indicate that different geometry dimensions of the negative Poisson’s ratio have different influences on the sensitivity of the magnetostrictive strain sensor. The proposed magnetostrictive strain sensor shows the advantages of high sensitivity, easy implementation, convenient fabrication, and low cost.
机译:传统的磁致伸缩菌株传感器的检测灵敏度低。在该研究中,提出了一种具有改进灵敏度的无线和无源磁致伸缩应变传感器,建模,分析和测试。将具有负泊松比率结构的空心板作为基质,取代其用于常规泊松的比例。建立了分析模型,用于负泊松比基谱。进行有限元法(FEM)分析以验证负泊松的比率模型。进行实验以证明灵敏度增强原理。进行参数研究以研究几何维度对电信号输出的影响。我们表明,所提出的传感器的菌株试验敏感性可达高达176.3%。实验结果进一步表明,负泊松比的不同几何尺寸对磁致伸缩应变传感器的灵敏度的影响不同。所提出的磁致伸缩菌株传感器显示出高灵敏度,易于实施,制造方便,制造方便和低成本的优点。

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