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Influence of mechanical load bias on converse magnetoelectric laminate composites

机译:机械负荷偏压对逆磁电层压复合材料的影响

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A piezofiber/Metglas (PFM) magnetoelectric (ME) laminate has been integrated into a graphite epoxy composite (GEC) to study the converse ME effect (CME). Experimental data on a PFM/GEC subjected to both a dc magnetic field bias and a dc mechanical load bias while exciting it with an ac electric driving voltage are presented. Results of these tests indicate that both the mechanical load and the dc magnetic field strongly influence the CME response. Furthermore, an optimum mechanical load exists to maximize the CME coefficient, which should also be present in standalone ME laminates. These results reveal that the CME coefficient can be further increased with a proper mechanical load bias. Therefore, the selection of an appropriate mechanical preload as well as dc magnetic bias will maximize the CME response and sensitivity in ME laminates as well as integrated structural systems.
机译:压区纤维/梅尔格拉斯(PFM)磁电(ME)层压板已集成到石墨环氧复合物(GEC)中,以研究逆转ME效果(CME)。呈现了对DC磁场偏置的PFM / GEC的实验数据和DC机械负载偏置,同时促使其与AC电驱动电压促进。这些测试的结果表明机械负载和直流磁场都强烈影响了CME响应。此外,存在最佳的机械负载来最大化CME系数,其也应该以独立的ME层压板存在。这些结果表明,通过适当的机械负载偏压,可以进一步增加CME系数。因此,选择适当的机械预载荷以及DC磁偏压将最大化ME层压板的CME响应和灵敏度以及集成的结构系统。

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