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A four-variable refined plate theory for dynamic stability analysis of S-FGM plates based on physical neutral surface

机译:基于物理中性面的S-FGM板动态稳定性分析的四变量精制板理论

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Dynamic instability analysis of S-FGM on elastic medium is investigated using a four-variable refined plate theory. The material is graded in the thickness direction and two power law based on the rule of mixture is used to estimate the effective material properties. The neutral surface position for such S-FGM plates is determined and the third-order shear deformation theory based on exact neutral surface position is employed. If the neutral surface is used, the FGM plates can easily be treated, because the coupling between stretching and bending deformations is not occurred. Even though present theory uses only four unknown variables, have strong similarities with CPT in many aspects such as boundary conditions, equation of motion and stress resultant expressions. Hamilton's principle is utilized to derive the equations of motion. It is assumed that the elastic medium is modeled as Pasternak elastic medium. The governing equations are written in the form of Mathieu-Hill equations and then Bolotin's method is employed to determine the instability regions. Various numerical results are presented to reveal the influences of static and dynamic load factors, power law index, elastic medium parameter, and side-to-thickness ratio on the dynamic stability characteristics of S-FGM plates. Also, the formulation should provide engineers with the capability for the design of S-FGM plates for special technical applications including aircraft, rocket, wing surfaces and missile skins. (C) 2015 Elsevier Ltd. All rights reserved.
机译:使用四变量精制板理论研究了S-FGM在弹性介质上的动态不稳定性分析。材料在厚度方向上分级,并且基于混合规则使用两个幂律来估计有效材料性能。确定此类S-FGM板的中性表面位置,并采用基于精确中性表面位置的三阶剪切变形理论。如果使用中性表面,则FGM板很容易处理,因为不会发生拉伸和弯曲变形之间的耦合。尽管目前的理论仅使用四个未知变量,但在边界条件,运动方程和应力合成表达式等许多方面与CPT都有很强的相似性。汉密尔顿原理被用来导出运动方程。假设将弹性介质建模为Pasternak弹性介质。控制方程以Mathieu-Hill方程的形式编写,然后采用Bolotin方法确定不稳定性区域。给出了各种数值结果,以揭示静载荷和动载荷因子,幂律指数,弹性介质参数和侧厚比对S-FGM板的动态稳定性特征的影响。此外,该配方还应为工程师提供设计特殊技术应用(包括飞机,火箭,机翼表面和导弹蒙皮)的S-FGM板的能力。 (C)2015 Elsevier Ltd.保留所有权利。

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