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Free Vibration Analysis of an Asymmetric Sandwich Beam Resting on a Variable Pasternak Foundation

机译:在可变的Pasternak基础上搁置不对称夹层梁的自由振动分析

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The free vibration analysis of a three layered asymmetric sandwich beam resting on a variable Pasternak foundation subjected to a pulsating axial load have been carried out under various boundary conditions by the computational method. A set of Hill's equations has been obtained by the application of extended Hamilton's principle and generalized Galerkin's method. The effects of elastic foundation variation parameter, thickness ratio of two elastic layers, elastic modulus ratio, the ratio of length of the beam to the thickness of the elastic layer, the ratio of the modulus of the shear layer of foundation to the Young's modulus of elastic layer, the ratio of shear modulus of the core to the Young's modulus of the elastic layer, the ratio of the thickness of the Pasternak foundation to the length of the beam and core loss factors on the natural frequency have been studied.
机译:通过计算方法在各种边界条件下在各种边界条件下进行三个层叠的非对称夹层光束的自由振动分析。 通过扩展汉密尔顿原则和广义的Galerkin的方法,已经获得了一套山的方程。 弹性地基变化参数,厚度比的两个弹性层,弹性模量比,光束长度的比率与弹性层的厚度,剪切层的模量与杨氏模量的剪切层的比率 弹性层,芯的剪切模量与弹性层的杨氏模量的比例,研究了Pasternak基础的厚度与梁的长度和核心损失因子上的自然频率。

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