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首页> 外文期刊>Steel & Composite Structures: An International Journal >A four variable trigonometric integral plate theory for hygro-thermo-mechanical bending analysis of AFG ceramic-metal plates resting on a two-parameter elastic foundation
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A four variable trigonometric integral plate theory for hygro-thermo-mechanical bending analysis of AFG ceramic-metal plates resting on a two-parameter elastic foundation

机译:一种四变量三角整体板理论,用于两参数弹性基础休息休闲陶瓷 - 金属板的Hygro-热机械弯曲分析

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摘要

In this research, a simple four-variable trigonometric integral shear deformation model is proposed for the static behavior of advanced functionally graded (AFG) ceramic-metal plates supported by a two-parameter elastic foundation and subjected to a nonlinear hygro-thermo-mechanical load. The elastic properties, including both the thermal expansion and moisture coefficients of the plate, are also supposed to be varied within thickness direction by following a power law distribution in terms of volume fractions of the components of the material. The interest of the current theory is seen in its kinematics that use only four independent unknowns, while first-order plate theory and other higher-order plate theories require at least five unknowns. The "in-plane displacement field" of the proposed theory utilizes cosine functions in terms of thickness coordinates to calculate out-of-plane shear deformations. The vertical displacement includes flexural and shear components. The elastic foundation is introduced in mathematical modeling as a two-parameter Winkler-Pastemak foundation. The virtual displacement principle is applied to obtain the basic equations and a Navier solution technique is used to determine an analytical solution. The numerical results predicted by the proposed formulation are compared with results already published in the literature to demonstrate the accuracy and efficiency of the proposed theory. The influences of "moisture concentration", temperature, stiffness of foundation, shear deformation, geometric ratios and volume fraction variation on the mechanical behavior of AFG plates are examined and discussed in detail.
机译:在该研究中,提出了一种简单的四变量三角度积分剪切变形模型,用于通过双参数弹性基础支撑的先进功能梯度(AFG)陶瓷板的静态行为,并经受非线性Hygro-Thermo-Manight负载。包括板的热膨胀和水分系数的弹性性质也应该通过在材料的体积分数方面通过幂律分布在厚度方向内变化。目前理论的兴趣在其运动学中,仅使用四个独立的未知数,而一阶板理论和其他高阶板理论需要至少五个未知数。所提出的理论的“面内位移场”利用余弦函数在厚度坐标方面以计算平面外剪切变形。垂直位移包括弯曲和剪切部件。弹性基础以数学建模引入,作为双参数Winkler-Pastemak基础。应用虚拟位移原理以获得基本方程,并且使用Navier解决方案技术来确定分析解决方案。将所提出的配方预测的数值结果与文献中已发表的结果进行比较,以证明提出的理论的准确性和效率。检查并详细讨论了“水分浓度”,温度,基础刚度,基础,刚度,几何比率和体积分数对AFG板的力学行为的影响。

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