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首页> 外文期刊>Journal of Computational and Applied Research in Mechanical Engineering (JCARME) >Assessing different nonlinear analysis methods for free vibrations of initially stressed composite laminated plates
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Assessing different nonlinear analysis methods for free vibrations of initially stressed composite laminated plates

机译:评估不同的非线性分析方法对初始应力复合板的自由振动

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In this paper, the nonlinear free vibrations of thin symmetric and non-symmetric cross-ply composite plates subjected to biaxial initial stresses are investigated. Because of their excellent properties such as specific strength and specific stiffness, composite plates have wide applications in aerospace and mechanical structures. Based on Von-Karman's strain-displacement relations and using Galerkin method, the nonlinear differential equation of free vibrations of initially stressed composite plate is obtained. This nonlinear equation is solved using two different analytical perturbation methods, namely method of multiple scales (MTS) and homotopy perturbation method (HPM), to analyze the nonlinear vibrations of initially stressed cross-ply composite plates. Effects of tensile and compressive biaxial initial stresses, initial vibration amplitude, thickness, and aspect ratios of the composite plates on the frequency behavior are investigated. The validity of the results is confirmed by making a comparison with those reported in the literature. According to the results, both analytical solutions show increasing trends for natural frequency parameters by increasing normal initial stresses. Regardless of the value of initial biaxial stresses, for both symmetric and non-symmetric plates, the results of MTS and HPM are in close agreement for the smallest initial amplitude. However, for compressive initial stresses, by increasing initial amplitude ratios, the discrepancies between the results of HPM and MTS increase for symmetric and non-symmetric plates. Although HPM includes less computational effort (smaller length of formulation) than MTS, the linear-to-nonlinear frequency ratios obtained using MTS method become closer to those obtained by HPM as initial vibration amplitude is decreased and initial stress is increased.
机译:本文研究了承受双轴初始应力的对称和非对称薄层复合板的非线性自由振动。由于其优异的性能(例如,比强度和比刚度),复合板在航空航天和机械结构中具有广泛的应用。基于冯-卡曼应变-位移关系,采用Galerkin法,得到了初始受压复合板自由振动的非线性微分方程。使用两种不同的解析扰动方法(即多尺度方法(MTS)和同伦扰动方法(HPM))来求解该非线性方程,以分析初始应力交叉复合板的非线性振动。研究了拉伸和压缩双轴初始应力,初始振动幅度,厚度以及复合板的长宽比对频率行为的影响。通过与文献报道相比较,证实了结果的有效性。根据结果​​,两种分析解决方案均会通过增加正常初始应力来显示自然频率参数的增长趋势。不管初始双轴应力的值如何,对于对称板和非对称板,MTS和HPM的结果对于最小的初始振幅都非常一致。但是,对于压缩初始应力,通过增加初始振幅比,对称和非对称板的HPM和MTS结果之间的差异会增加。尽管HPM比MTS包含更少的计算工作量(更短的配方长度),但随着MTS方法获得的线性与非线性频率之比,随着初始振动幅度的减小和初始应力的增加,其与HPM所获得的线性比与非线性频率比更加接近。

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