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Tuning of bandwidth by superposition of bending and radial resonance modes in bilayer laminate composite

机译:通过双层层压复合材料中弯曲和径向共振模式的叠加来调节带宽

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Abstract Though the magnetoelectric (ME) coupling strength found to be enhanced at electromechanical resonance, the narrow bandwidth limits its device functionality. Hence, widening the resonance bandwidth without affecting the ME coupling strength is essential for practical applications. This paper explores the possibility of tuning the resonance bandwidth by superimposing radial mode over bending mode in simple asymmetric bilayer laminate structure. Such superposition of modes can be realized by varying the thickness of the ferroelectric layer in ME composite. In order to examine this, (BiScO3-PbTiO3)-NiFe2O4 bilayer ME composite with varying thickness were fabricated and characterized with direct and converse ME measurements. As expected, variation in thickness of the bilayer tunes the second bending mode to overlap with the radial mode. The direct and converse ME studies demonstrate that the resonance bandwidth is modulated due to overlapping of modes. The off-phase superposition of resonance and anti-resonance frequency of radial and bending mode is essential for bandwidth tuning. Graphical abstract Display Omitted Highlights Widening of resonance bandwidth in magnetoelectric composite through superposition of radial and bending modes. Enhancement of bandwidth in both direct and converse measurements. The necessary design condition and controlled method of tuning the bandwidth are shown analytically. The off-phase superposition of resonance modes is essential for bandwidth tuning.
机译: 摘要 尽管在机电共振时磁电(ME)耦合强度有所提高,但窄带宽限制了其设备功能。因此,在不影响ME耦合强度的情况下加宽谐振带宽对于实际应用至关重要。本文探讨了在简单的不对称双层层状结构中通过叠加径向模式和弯曲模式来调整谐振带宽的可能性。这种模式的叠加可以通过改变ME复合材料中铁电层的厚度来实现。为了对此进行检查,(BiScO 3 -PbTiO 3 )-NiFe 图形摘要 省略显示 突出显示 在直接和反向测量中都增加带宽。 < ce:label>• 分析显示了必要的设计条件和调节带宽的受控方法。 异相叠加谐振模式中的n个对于带宽调整至关重要。

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