精细梁模型下氧化石墨烯增强磁热电纳米纤维的振动分析

R. Selvamani, J. Rexy, F. Ebrahimi
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摘要

本文研究了氧化石墨烯粉末(GOP)增强复合纳米纤维的磁热电变形。根据哈密顿原理,采用高阶三角精化梁模型求解问题的控制方程。将场关系与位移场方程相结合,将非均匀磁场和热压电场的效应应用到控制方程中。然后利用伽辽金法求解得到的方程,考虑不同边界条件对纤维振动响应的影响。通过与已有研究结果的比较,验证了该模型的准确性和有效性。此外,通过表格和色散曲线强调了不同变量对GOP增强磁压电热弹性复合纤维无量纲频率的影响。GOP的质量分数和磁热电效应对纳米复合材料的刚度有显著影响。
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Vibration Analysis of a Magneto Thermo Electrical Nano Fiber Reinforced with Graphene Oxide Powder Under Refined Beam Model
The present article express the magneto thermo electric deformation of composite nano fiber reinforced by graphene oxide powder (GOP). To reach the governing equation of the problem a higher-order trigonometric refined beam model is utilized according to Hamilton’s principle. The effect of a nonuniform magnetic and  thermo piezo electric field is applied to the governing equations by combining the field relations with the displacement field equations. Then, obtained equations are solved by using Galerkin’s method to consider the influence of different boundary conditions on the vibrational responses of the fiber. The accuracy and efficiency of the presented model is verified by comparing the results with that of published researches. Further, the effects of different variant on the dimensionless frequency of GOP reinforced magneto piezo thermo elastic composite fibers are highlighted through tables and dispersion curves. The weight fraction of GOP and the magneto thermo electro effects have significant influence in the stiffness of the nano composites.
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