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Nonlinear Vibration of Sandwich Beams with Functionally Graded Negative Poisson's Ratio Honeycomb Core

机译:用功能梯度负泊松比蜂窝芯的夹层梁的非线性振动

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摘要

This paper investigates the nonlinear flexural vibration of sandwich beams with functionally graded (FG) negative Poisson's ratio (NPR) honeycomb core in thermal environments. The novel constructions of sandwich beams with three FG configurations of re-entrant honeycomb cores through the beam thickness direction are proposed. The temperature-dependent material properties of both face sheets and core of the sandwich beams are considered. 3D full-scale finite element analyses are conducted to investigate the nonlinear vibration, and the variation of effective Poisson's ratio (EPR) of the sandwich beams in the large deflection region. Numerical simulations are carried out for the sandwich beam with FG-NPR honeycomb core in different thermal environmental conditions, from which results for the same sandwich beam with uniform distributed NPR honeycomb core are obtained as a basis for comparison. The effects of FG configurations, temperature changes, boundary conditions, and facesheet-to-core thickness ratios on the nonlinear vibration ratio curves and EPR-deflection curves of sandwich beams are discussed in detail.
机译:本文研究了在热环境中具有功能梯度(FG)负泊松比(NPR)蜂窝芯的夹层梁的非线性弯曲振动。提出了一种通过光束厚度方向具有三个FG配置的夹层光束的夹层梁的新颖结构。考虑了夹层梁的两种面板和芯的温度依赖性材料特性。进行3D全规模有限元分析以研究大偏转区域中夹层光束的有效泊松比(EPR)的非线性振动和变化。在不同热环境条件下用FG-NPR蜂窝芯进行数值模拟,从此获得与均匀分布的NPR蜂窝芯的相同夹层光束的结果作为比较的基础。详细讨论了FG配置,温度变化,边界条件和面板表到核心厚度比对夹层梁的非线性振动比曲线和EPR偏转曲线的影响。

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