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VIBRATIONS OF FUNCTIONALLY GRADED SHELLS

机译:功能梯度壳体的振动

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摘要

The behavior of functionally graded structures has received a great deal of attention in recent years. Usually, these structures are made out of a composite material with a modulus of elasticity, a Poisson's ratio, and a density that vary through the thickness. The non-uniformity through the thickness introduces coupling between the transverse deformations and the deformations of the mid-surface. Previous publications have shown how to account for these added complexities and have presented extensive results in tabular form In this article, available results are used to show that the behavior of functionally graded shells is similar to that of homogeneous isotropic shells. It is well known that for isotro-pic shells, results can be presented in non-dimensional form so that, once results are obtained for one material, they can be simply scaled to obtain the corresponding results for shells made out of another material. The same can then be done for functionally graded shells. In addition, if functionally graded shells behave like homogeneous shells, no new method of analysis is required. The second part of the paper examines why this is true.
机译:近年来,功能梯度结构的行为引起了广泛的关注。通常,这些结构由具有弹性模量,泊松比和密度随厚度变化的复合材料制成。通过厚度的不均匀性在横向变形和中表面变形之间引入耦合。以前的出版物已经说明了如何解决这些增加的复杂性,并以表格形式提供了广泛的结果。在本文中,可用的结果用于显示功能梯度壳的行为与均质各向同性壳的行为相似。众所周知,对于各向同性的壳,结果可以以无量纲形式显示,因此,一旦获得一种材料的结果,就可以简单地按比例缩放它们以获得由另一种材料制成的壳的相应结果。然后可以对功能渐变的外壳执行相同的操作。此外,如果功能分级的壳的行为类似于均质壳,则不需要新的分析方法。本文的第二部分探讨了为什么这是正确的。

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