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Effect of porosity in interfacial stress analysis of perfect FGM beams reinforced with a porous functionally graded materials plate

机译:具有多孔功能分级材料板的完美FGM梁界面应力分析孔隙率的影响

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In this paper, a general model is developed to predict the distribution of interfacial shear and normal stresses of FG beam reinforced by porous FGM plates under mechanical loading. The beam is assumed to be isotropic with a constant Poisson's ratio and power law elastic modulus through the beam thickness. Stress distributions, depending on an inhomogeneity constant, were calculated and presented in graphicals forms. It is shown that both the normal and shear stresses at the interface are influenced by the material and geometry parameters of the composite beam, and it is shown that the inhomogeneities play an important role in the distribution of interfacial stresses. The results presented in the paper can serve as a benchmark for future analyses of functionally graded beams strengthened by imperfect varying properties plates. Numerical comparisons between the existing solutions and the present new solution enable a clear appreciation of the effects of various parameters. The results of this study indicated that the imperfect functionally graded panel strengthening systems are effective in enhancing flexural behavior of the strengthened FGM beams. This research is helpful in understanding the mechanical behaviour of the interface and design of hybrid structures.
机译:本文开发了一般模型以预测机械负载下多孔FGM板加固FG梁的界面剪切和正常应力的分布。假设光束具有通过光束厚度的恒定泊松比和功率法弹性模量的各向同性。根据不均匀性常变的应力分布计算并以图形形式呈现。结果表明,界面处的正常和剪切应力都受到复合梁的材料和几何参数的影响,并且示出了不均匀性在界面应力的分布中起重要作用。纸张中提出的结果可以用作通过不完全不同性质板增强的功能渐变梁的未来分析的基准。现有解决方案与本新解决方案之间的数值比较使得清楚地欣赏各种参数的影响。本研究的结果表明,功能较强的功能分级面板强化系统有效地提高了增强的FGM光束的抗弯行为。该研究有助于了解界面的机械行为和混合结构的设计。

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