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首页> 外文期刊>Journal of Solid Mechanics and Materials Engineering >Electromagneto-mechanical Behavior of Giant Magnetostrictive/Piezoelectric Laminates under Electric Fields for Self-Sensing Cantilever Actuators
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Electromagneto-mechanical Behavior of Giant Magnetostrictive/Piezoelectric Laminates under Electric Fields for Self-Sensing Cantilever Actuators

机译:自感应悬臂驱动器在电场作用下的大磁致伸缩/压电叠片的电磁力学行为

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This work deals with the electromagneto-mechanical behavior of self-sensing giant magnetostrictive/piezoelectric laminated composites under electric fields both numerically and experimentally. The cantilever laminated composite is fabricated using thin magnetostrictive Terfenol-D and piezoelectric PZT layers. The magnetostriction of the laminated composite is first measured. Next, a nonlinear finite element analysis is performed to evaluate the second-order magnetoelastic constants in Terfenol-D layer bonded to PZT layer, using measured data. The tip deflection, internal stresses and induced magnetic field for the giant magnetostrictive/piezoelectric laminated composites under electric fields are then discussed in detail. Experimental results on the tip deflection and magnetic induction change due to electric fields, which verify the model, are also presented.
机译:这项工作从数值和实验上研究了自感应巨型磁致伸缩/压电层压复合材料在电场下的电磁力学行为。悬臂叠层复合材料是使用薄磁致伸缩Terfenol-D和压电PZT层制成的。首先测量层压复合材料的磁致伸缩。接下来,使用测量数据进行非线性有限元分析,以评估粘结到PZT层的Terfenol-D层中的二阶磁弹性常数。然后详细讨论了在电场作用下巨型磁致伸缩/压电叠层复合材料的尖端挠度,内应力和感应磁场。还给出了由电场引起的尖端偏转和磁感应变化的实验结果,这些结果验证了该模型。

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