Glavan Gašper, Belyaeva Inna A, Shamonin Mikhail
East Bavarian Centre for Intelligent Materials (EBACIM), Ostbayerische Technische Hochschule (OTH) Regensburg, Seybothstr. 2, D-93053 Regensburg, Germany.
Sensors (Basel). 2022 May 17;22(10):3791. doi: 10.3390/s22103791.
In this work, multiferroic cantilevers comprise a layer of a magnetoactive elastomer (MAE) and a commercially available piezoelectric polymer-based vibration sensor. The structures are fixed at one end in the horizontal plane and the magnetic field is applied vertically. First, the magnetoelectric (ME) response to uniform, triangle-wave magnetic fields with five different slew rates is investigated experimentally. Time and field dependences of the generated voltage, electric charge, and observed mechanical deflection are obtained and compared for four different thicknesses of the MAE layer. The ME responses to triangular and sinusoidal wave excitations are examined in contrast. Second, the ME response at low frequencies (≤3 Hz) is studied by the standard method of harmonic magnetic field modulation. The highest ME coupling coefficient is observed in the bias magnetic field strength of ≈73 kA/m and it is estimated to be about 3.3 ns/m (ME voltage coefficient ≈ 25 V/A) at theoretically vanishing modulation frequency (f→0 Hz). Presented results demonstrate that the investigated heterostructures are promising for applications as magnetic-field sensors and energy harvesting devices.
在这项工作中,多铁性悬臂梁由一层磁活性弹性体(MAE)和一个市售的基于压电聚合物的振动传感器组成。这些结构在水平面的一端固定,磁场垂直施加。首先,通过实验研究了对具有五种不同转换速率的均匀三角波磁场的磁电(ME)响应。针对MAE层的四种不同厚度,获得并比较了产生的电压、电荷以及观察到的机械挠度的时间和场依赖性。对比研究了对三角波和正弦波激励的ME响应。其次,通过谐波磁场调制的标准方法研究了低频(≤3 Hz)下的ME响应。在约73 kA/m的偏置磁场强度下观察到最高的ME耦合系数,并且在理论上消失的调制频率(f→0 Hz)下估计约为3.3 ns/m(ME电压系数≈25 V/A)。给出的结果表明,所研究的异质结构有望用作磁场传感器和能量收集装置。