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Three-dimensional Elasticity Solution For Sandwich Panels With A Functionally Graded Core

机译:具有功能梯度芯的夹芯板的三维弹性解决方案

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Sandwich panels are used in a variety of engineering applications including aircraft, construction and transportation. Due to the mismatch of stiffness properties between the face sheets and the core, sandwich panels are susceptible to delamination, which is a major problem in sandwich construction. To increase the resistance of such panels to delamination, the concept of a functionally graded material (FGM) is being actively explored in sandwich panel design. This paper is concerned with three-dimensional elasticity analysis of sandwich panels with a functionally graded core subjected to transverse loading. The Young's modulus of the core is assumed to vary exponentially through the thickness. A comparative study of two types of sandwich panels reveals that the use of a graded core instead of a conventional homogeneous one eliminates discontinuity of the in-plane normal and shear stresses across the face sheet-core interfaces, which contribute to the structural failure of the panel.
机译:夹心板用于各种工程应用,包括飞机,建筑和运输。由于面板和芯部之间的刚度特性不匹配,因此夹心板容易分层,这是夹心结构中的主要问题。为了增加这种板的抗分层性,正在三明治板设计中积极探索功能梯度材料(FGM)的概念。本文涉及具有功能梯度型芯的夹芯板在横向载荷下的三维弹性分析。假定芯的杨氏模量在厚度上呈指数变化。对两种类型的夹芯板的比较研究表明,使用渐变型芯代替传统的均质型芯,可以消除面板-型芯界面上的平面法向力和剪应力的不连续性,这会导致面板的结构破坏。面板。

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