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Size-dependent vibration and electro-magneto-elastic bending responses of sandwich piezomagnetic curved nanobeams

机译:夹层压电磁弯曲纳米束型尺寸依赖振动和电磁弹性弯曲响应

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摘要

Size-dependent free vibration responses and magneto-electro-elastic bending results of a three layers piezomagnetic curved beam rest on Pasternak's foundation are presented in this paper. The governing equations of motion are derived based on first-order shear deformation theory and nonlocal piezo-elasticity theory. The curved beam is containing a nanocore and two piezomagnetic face-sheets. The piezomagnetic layers are imposed to applied electric and magnetic potentials and transverse uniform loadings. The analytical results are presented for simply-supported curved beam to study influence of some parameters on vibration and bending results. The important parameters are spring and shear parameters of foundation, applied electric and magnetic potentials, nonlocal parameter and radius of curvature of curved beam. It is concluded that the increase in radius of curvature tends to an increase in the stiffness of curved beam and consequently natural frequencies increase and bending results decrease. In addition, it is concluded that with increase of nonlocal parameter of curved beam, the stiffness of structure is decreased that leads to decrease of natural frequency and increase of bending results.
机译:本文介绍了三层压电磁弯梁的尺寸依赖性自由振动响应和磁力电弹性弯曲结果。基于一阶剪切变形理论和非局部压电弹性理论导出运动的控制方程。弯曲梁含有纳米内和两个压电磁性面板。压电磁层被施加以施加电和磁电位和横向均匀的载荷。用于简单地支持的弯曲光束的分析结果,以研究一些参数对振动和弯曲结果的影响。重要的参数是基础的弹簧和剪切参数,施加电电位,弯曲光束的非局部参数和曲率半径。得出结论,曲率半径的增加趋于增加弯曲光束的刚度,因此自然频率增加和弯曲结果降低。此外,结论是,随着弯曲光束的非局部参数的增加,结构的刚度降低,导致固有频率的降低和弯曲结果的增加。

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