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A New Beam Model for Simulation of the Mechanical Behaviour of Variable Thickness Functionally Graded Material Beams Based on Modified First Order Shear Deformation Theory

机译:基于修正一阶剪切变形理论的变厚度功能梯度材料梁力学行为模拟的新型梁模型

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摘要

There are many beam models to simulate the variable thickness functionally graded material (FGM) beam, each model has advantages and disadvantages in computer aided engineering of the mechanical behavior of this beam. In this work, a new model of beam is presented to study the mechanical static bending, free vibration, and buckling behavior of the variable thickness functionally graded material beams. The formulations are based on modified first order shear deformation theory and interpolating polynomials. This new beam model is free of shear-locking for both thick and thin beams, is easy to apply in computation, and has efficiency in simulating the variable thickness beams. The effects of some parameters, such as the power-law material index, degree of non-uniformity index, and the length-to-height ratio, on the mechanical behavior of the variable thickness FGM beam are considered.
机译:有许多梁模型可用来模拟可变厚度的功能梯度材料(FGM)梁,每种模型在该梁的机械行为的计算机辅助工程中各有利弊。在这项工作中,提出了一种新的梁模型来研究可变厚度功能梯度材料梁的机械静态弯曲,自由振动和屈曲行为。这些公式基于修改后的一阶剪切变形理论和插值多项式。这种新的梁模型对厚梁和薄梁都没有剪切锁定,易于在计算中应用,并且在模拟可变厚度梁方面具有效率。考虑了一些参数,例如幂律材料指数,非均匀度指数和长高比,对可变厚度FGM梁的力学性能的影响。

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