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In-plane functionally graded plates: A study on the free vibration and dynamic instability behaviours

机译:平面内功能梯度板:自由振动和动态不稳定性行为的研究

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Functionally graded materials are well-known composite materials, characterized by a continuously varying mixture of materials' phases, tailored to meet structures operating requirements while contributing to minimize abrupt stress transitions at dissimilar materials' interfaces, as occur in composite laminates. Hence, designing a functionally graded material to comply with these objectives constitutes an important modelling tool to improve structures' functionality. These graded composite materials present more commonly a mixture variation through the structures' thickness direction. However, when dealing with thin structures this solution may present evident limitations, both from the manufacturing perspective as well as from the through-thickness distribution influence on the structure response. It is therefore important to explore other spatial mixture distributions' possibilities.To this purpose, the present work considers thin graded materials' plates which constitution is defined by a set of different in-plane volume fraction distributions. The influence of these distributions on the free vibrations and dynamic instability of thin plates is assessed through a comprehensive set of parametric studies. The free vibration problem and the dynamic instability problem' solutions are respectively obtained by Rayleigh-Ritz and Bolotin's methods. As a complementary analysis contribution, image correlation studies are also developed for a set of fundamental mode shapes.
机译:功能梯度材料是众所周知的复合材料,其特征是材料相的连续变化,旨在满足结构运行要求,同时最大程度地减少复合材料层压板中不同材料界面处的突然应力转变。因此,设计功能梯度材料以符合这些目标构成了改善结构功能的重要建模工具。这些渐变复合材料通常会在结构的厚度方向上呈现混合物变化。但是,在处理薄结构时,从制造角度以及整个厚度分布对结构响应的影响来看,该解决方案都可能存在明显的局限性。因此,探索其他空间混合分布的可能性非常重要。为此,本工作考虑了薄梯度材料板,其构造由一组不同的面内体积分数分布定义。这些分布对薄板的自由振动和动态不稳定性的影响通过一组全面的参数研究进行评估。自由振动问题和动力不稳定性问题的解分别通过瑞利-里兹和波洛廷的方法获得。作为补充分析的贡献,还对一组基本模式形状进行了图像相关性研究。

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