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首页> 外文期刊>Latin American Journal of Solids and Structures >Free Vibration Analysis of Reinforced Composite Functionally Graded Plates with Steady State Thermal Conditions
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Free Vibration Analysis of Reinforced Composite Functionally Graded Plates with Steady State Thermal Conditions

机译:稳态热条件下增强复合功能梯度板的自由振动分析

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The present paper deals with free vibration of functionally graded fiber reinforced rectangular plates subjected to thermal loads. The rectangular plates are assumed orthotropic. The continuous grading fiber reinforced plates have a smooth variation in matrix volume fraction in the thickness direction. Two different types of volume fraction profiles through the thickness of plate are proposed: classic and symmetric. As the plate is thick, the equations of motion are derived based on three dimensional theory of elasticity. Inevitably, 3D General differential quadrature method is used instead of regular solving methods in order to discretize equations of motion equations as linear set of algebraic equations. The effects of temperature, volume fraction profiles, and boundary conditions are investigated. Some interesting conclusions obtained when the material properties were assumed to be temperature-dependent. It has been observed that temperature and functionality of FG plate have significant effect on the natural frequencies of the plate.
机译:本文涉及功能梯度纤维增强矩形板在热载荷作用下的自由振动。假定矩形板是正交各向异性的。连续分级纤维增强板的基质体积分数在厚度方向上具有平滑的变化。提出了通过板厚度的两种不同类型的体积分数分布:经典和对称。当板厚时,根据三维弹性理论推导运动方程。为了将运动方程式离散为代数方程式的线性集,不可避免地使用3D通用微分求积法代替正则求解法。研究了温度,体积分数分布和边界条件的影响。当材料特性被认为是温度依赖性时,得出了一些有趣的结论。已经观察到,FG板的温度和功能性对板的固有频率具有显着影响。

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