Finite Element Vibration Analysis of a Functionally Graded Plate

Alif Ngimbi Diambu, M. Çevik
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引用次数: 1

Abstract

Functionally Graded (FG) materials are recent types of engineering materials Fdeveloped as a solution for applications where a couple of relevant properties of different materials are desired in a single continuous composite structure. In these materials, properties are patterned in a way to insure a gradient and continuous property transition direction-wise. This study is a contribution in the literature among other studies but provides an additional understanding of FG Plate structures vibrational behavior in terms of natural frequencies and modal shapes. For this end, an FG plate is modelized and analyzed using AnsysAPDL. Two boundary conditions (all sides clamped “CCCC” and two parallel sides clamped with two others free “CCFF”) for the same plate element and two power law indices “n” are considered. Results are compared with those in the literature and conclusions are drawn accordingly.
功能梯度板的有限元振动分析
功能梯度(FG)材料是一种最新的工程材料类型,用于在单个连续复合结构中需要不同材料的几个相关特性的应用。在这些材料中,属性以一种确保梯度和连续属性方向过渡的方式进行图案化。本研究是对其他研究文献的贡献,但从固有频率和模态振型方面提供了对FG板结构振动行为的额外理解。为此,使用AnsysAPDL对FG板进行了建模和分析。考虑了同一板单元和两个幂律指标n的两个边界条件(所有边夹紧“CCCC”和两个平行边夹紧另外两个自由的“CCFF”)。将结果与文献进行比较,得出结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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