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Vibration of multilayered beams using sinus finite elements with transverse normal stress

机译:使用具有横向法向应力的窦性有限元振动多层梁

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摘要

A family of sinus models is presented for the analysis of laminated beams in the framework of free vibration. A three-noded finite element is developed with a sinus distribution with layer refinement. The transverse shear strain is obtained by using a cosine function avoiding the use of shear correction factors. This kinematic accounts for the interlaminar continuity conditions on the interfaces between the layers, and the boundary conditions on the upper and lower surfaces of the beam. A conforming FE approach is carried out using Lagrange and Hermite interpolations. It is important to notice that the number of unknowns is independent of the number of layers. Vibration mechanical tests for thin and thick laminated and sandwich beams are presented in order to evaluate the capability of these new finite elements to give accurate results with respect to elasticity or finite element reference solutions. Both convergence velocity and accuracy are discussed and these new finite elements yield very accurate results at a low computational cost for various boundary conditions. In particular, the two models including the transverse normal effect have the capability to take into account the thickness mode shape.
机译:提出了一系列窦性模型,用于在自由振动的框架内分析层合梁。开发了三节点有限元,其正弦分布与层细化有关。通过使用余弦函数获得横向剪切应变,从而避免使用剪切校正因子。这种运动学解释了层之间界面上的层间连续性条件,以及梁上下表面的边界条件。使用Lagrange和Hermite插值执行符合的FE方法。重要的是要注意,未知数的数量与层数无关。为了评估这些新的有限元对弹性或有限元参考解决方案给出准确结果的能力,提出了对薄,厚叠层和夹层梁的振动力学测试。讨论了收敛速度和精度,并且对于各种边界条件,这些新的有限元均以较低的计算成本产生了非常准确的结果。特别地,包括横向法向效应的两个模型都具有考虑厚度模式形状的能力。

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