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Nonlocal Model for a Magneto-Electro-Elastic Nanoplate

机译:用于磁体电弹性纳米板的非局部模型

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A mathematical model based on nonlocal third-order shear deformation plate theory has been developed to evaluate the mechanical and electromagnetic behavior of magneto-electro-elastic nanoplates. Two types of magneto-electro-elastic composites have been considered, all of them combination of Barium Titanate sheets, that represents the piezoelectric phase, and Cobalt Ferrite, that is the piezomagnetic component. Setting magneto-electric boundary conditions on each laminate, it has been possible to extrapolate and to analyze free vibrations frequencies for all considered plates, allowing to do objective assessments on what factors influence laminate modes and, especially, how these vary in the passage from normal to nanometric dimensions.
机译:已经开发了一种基于非局部三阶剪切变形板理论的数学模型,以评估磁力弹性纳米板的机械和电磁行为。已经考虑了两种类型的磁性电弹性复合材料,所有类型的钛酸钡片的组合,代表压电相和钴铁氧体,即压电磁性组分。在每个层压板上设定磁电界状况,有可能外推并分析所有被认为是板块的自由振动频率,允许对影响层压模式影响的因素进行客观评估,以及这些因素,尤其是在正常通道中有何不同到纳米尺寸。

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