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Coupled evaluation of the free vibration characteristics of magneto-electro-elastic skew plates in hygrothermal environment

机译:耦合评价湿热环境磁电弹性偏置板的自由振动特性

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The present article addresses the coupled free vibration problem of skew magneto-electro-elastic plates (SMEE) considering the temperature-moisture dependent material properties. The plate kinematics follows Reddy's higher order shear deformation theory. With the aid of finite element methods, the governing equations of motion are derived considering the Hamilton's principle and solved by adopting condensation technique. The influence of different temperature and moisture dependent empirical constants on the frequency response of SMEE plate has been assessed. In addition, the natural frequencies corresponding to various fields are evaluated and the effect of empirical constants on these coupled frequencies is determined. A detailed parametric study has been carried out to assess the individual effects of temperature and moisture dependent empirical constants along with their combined effect, aspect ratio, length-to-width ratio, stacking sequence and boundary conditions. The results reveal that the external environment as well as the geometrical skewness has a significant influence on the stiffness of the SMEE plates.
机译:本文考虑到温度水分依赖性材料特性,解决了偏光磁力弹性板(Smee)的耦合自由振动问题。板式运动学遵循Reddy的高阶剪切变形理论。借助有限元方法,考虑汉密尔顿原则并通过采用冷凝技术来推导运动方程。评估了不同温度和水分依赖性经验常数对Smee板的频率响应的影响。另外,评估对应于各种领域的自然频率,并确定经验常数对这些耦合频率的影响。已经进行了详细的参数研究,以评估温度和水分依赖性经验常数的个体效果以及它们的组合效应,纵横比,长度与宽度,堆叠序列和边界条件。结果表明,外部环境以及几何偏斜对斯梅板的刚度有显着影响。

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