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On the Thermal Buckling of Simply Supported Rectangular Plates Made of a Sigmoid Functionally Graded Al/Al2O3 Based Material

机译:乙状功能梯度Al / Al2O3基材料制成的简单支撑矩形板的热屈曲

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摘要

We study the thermal buckling of a simply supported sigmoid functionally graded (SFGM) rectangular plate using first-order shear deformation theory. The S-FGM system consists of ceramic (Al2O3) and metal (Al) phases varying across the plate thickness according to a law described by two power-law functions. The effective properties of the composite are determined by the rule of mixtures, whose implementation is simpler than that of methods of micromechanics. The thermal heating is characterized by a uniform, linear, or sinusoidal temperature distribution across the plate thickness. The effects of the plate aspect ratio, the relative thickness, the gradient index, and the transverse shear on the buckling temperature difference are studied.
机译:我们使用一阶剪切变形理论研究简单支撑的S型功能梯度(SFGM)矩形板的热屈曲。 S-FGM系统由陶瓷(Al2O3)和金属(Al)相组成,该相根据两个幂律函数描述的定律在整个板厚度上变化。复合材料的有效性能取决于混合物的规则,其实现比微力学方法更简单。热加热的特征在于整个板厚度上均匀,线性或正弦的温度分布。研究了板长宽比,相对厚度,梯度指数和横向剪切对屈曲温差的影响。

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